Use-case classes
The primary map. Each class package groups a medically coherent use case. Utilities are separated into API, instrumental and medical-device layers.
Tc-99m renal and nephrourology 17
Renal radiopharmaceuticals and calculation workflows: MAG3, DTPA, DMSA, glucoheptonate, generator Tc-99m, dynamic renography, GFR/ERPF and dosimetry.
API / calculation and rule-based 11
Reducing Agent Stoichiometry Calculator API / calculation and rule-basedTc-99m
What it does
Utility calculates the optimal volume of Stannous Chloride (SnCl2) solution: Based on ligand mass and Tc-99m activity Considering excess factor (to compensate for oxidation) With checks for toxicity and colloid formation risk
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary, hepatobiliary and GI, bone and musculoskeletal. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
KitName, LigandMassMg, LigandMolecularWeight, Tc99mActivityGBq, SnCl2ConcentrationMgPerML, ExcessFactor, VolumeToReconstituteML
Related utilities
Stannous Chloride Solution Stability Checker API / calculation and rule-basedTc-99m
What it does
Utility checks the quality of Stannous Chloride (SnCl2) solution: Sn(II) concentration (degradation ≤10%) pH of the medium (hydrolysis prevention) Visual inspection (no precipitate)
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
SolutionBatchID, PreparationDate, InitialConcentrationMgPerML, MeasuredConcentrationMgPerML, PHValue, HasPrecipitate, StorageCondition, DaysSincePreparation, TemperatureC
Related utilities
Stannous Ion Concentration QC API / calculation and rule-basedTc-99m
What it does
Utility controls key component of radiopharmaceuticals: Stannous ion (Sn2+) concentration Optical density (spectrophotometry) Sn/Tc ratio
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary, hepatobiliary and GI, cardiovascular. Workflow stages: synthesis, labelling and kit reconstitution, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, ProductName, Sn2_Conc_ug_ml, Absorbance, Target_Activity_MBq, Volume_ml, Min_Sn, Max_Sn
Related utilities
Tc-99m DMSA(III) Radiochemical Purity Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m DMSA(III): Radiochemical purity (≥90-95%) Free pertechnetate (≤5%) Reduced/hydrolyzed technetium (≤5%)
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary, hepatobiliary and GI, endocrine, thyroid and NET. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreePertechnetatePercent, ReducedHydrolyzedTechnetiumPercent, AluminumOxidePPM, pH, EndotoxinsEU_per_mL, SterilityTest, HeavyMetalsPPM, HoursSincePreparation
Related utilities
Tc-99m DTPA Stability And Transchelation Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m DTPA: Radiochemical purity (≥95%) Free pertechnetate (≤5%) Reduced/hydrolyzed technetium (≤5%)
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary, hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreePertechnetatePercent, ReducedHydrolyzedTechnetiumPercent, TranschelationPercent, AluminumOxidePPM, pH, EndotoxinsEU_per_mL, SterilityTest, HeavyMetalsPPM
Related utilities
Tc-99m Glucoheptonate Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m Glucoheptonate (GH): Radiochemical purity (≥95%) Free pertechnetate (≤5%) Reduced/hydrolyzed technetium (≤5%)
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary, hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, dosimetry and therapy planning.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreePertechnetatePercent, ReducedHydrolyzedTechnetiumPercent, AluminumOxidePPM, pH, EndotoxinsEU_per_mL, SterilityTest, HeavyMetalsPPM, HoursSincePreparation
Related utilities
Tc-99m Labeling Reaction pH Optimization Tool API / calculation and rule-basedTc-99m
What it does
Utility calculates the required buffer volume to achieve target pH: Considers drug type (DMSA, MAG3, HMPAO...) Calculates buffer volume without excessive dilution Assesses complex instability risk
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary. Workflow stages: synthesis, labelling and kit reconstitution, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
KitName, EluateVolumeML, EluatePH, TargetPH, LigandBufferCapacity, BufferType, BufferConcentrationM, BufferPH
Related utilities
Tc-99m MAG3 Labeling Efficiency Analyzer API / calculation and rule-basedTc-99m
What it does
Utility controls quality of renal scintigraphy agent: Radiochemical purity (>90%) Free pertechnetate (<5%) Hydrolyzed/colloidal Tc (<5%)
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary, hepatobiliary and GI, endocrine, thyroid and NET. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, ProductName, Complex_Percent, Free_Tc_Percent, Hydrolyzed_Percent, pH, Incubation_Min, Activity_MBq, Min_RCP, Max_Free
Related utilities
Tc-99m Mertiatide (MAG3) Kinetic Stability Checker API / calculation and rule-basedTc-99m
What it does
Utility evaluates MAG3 complex stability over time: Radiochemical purity (RCP) drop over 4 and 8 hours Transchelation rate (transfer to proteins) Impact of storage conditions (temperature, light)
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary, hepatobiliary and GI. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, InitialRCP_Percent, RCP_After4Hours, RCP_After8Hours, TranschelationPercent_4h, TranschelationPercent_8h, StorageTemperatureC, LightProtected, pH_At_T0
Related utilities
Tc99m MAG3 Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m MAG3: Radiochemical purity (≥90%) Free pertechnetate (≤5%) Colloidal technetium (≤5%)
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary, hepatobiliary and GI, endocrine, thyroid and NET. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadiochemicalPurityPercent, FreePertechnetatePercent, ReducedHydrolyzedTcPercent, pH, EndotoxinsEU, SterilityTest, ReactionTimeMin, CoolingTimeMin
Related utilities
Technetium99m Glucoheptonate Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m Glucoheptonate: Radiochemical purity (≥90%) Free pertechnetate (≤5%) Colloidal technetium (≤5%)
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary, hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadiochemicalPurityPercent, FreePertechnetatePercent, ReducedHydrolyzedTcPercent, pH, EndotoxinsEU, SterilityTest, TimeSinceReconstitutionMin, ProductType
Related utilities
Instrumental 3
Renal Kidney Uptake Calculation Helper InstrumentalTc-99m
What it does
Utility calculates quantitative renal function parameters: Left and right kidney uptake percentage Total Uptake Asymmetry Index
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary. Workflow stages: imaging QC and quantitative interpretation, stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
BatchNumber, ProductName, Left_Counts, Right_Counts, BG_Counts, Dose_MBq, Calib_Factor, Atten_Coeff, Left_Depth_cm, Right_Depth_cm
Related utilities
Tc-99m Generator Breakthrough Mo-99 Checker InstrumentalTc-99m
What it does
Utility checks critical parameters of Tc-99m generator eluate: Mo-99 breakthrough (<0.15 kBq per 1 MBq Tc-99m) — CRITICAL! Aluminum oxide (<10 ppm) pH (4.5-7.5)
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary, pulmonary and ventilation, blood, cells and marrow. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, Tc99mActivityMBq, Mo99ActivityKBq, AluminumOxidePPM, pH, EndotoxinsEU_per_mL, SterilityTest, GeneratorAgeDays, EluateVolumeML
Related utilities
Tc-99m Waste Decay Storage Manager InstrumentalTc-99m
What it does
Utility calculates waste hold time until background level: Current residual activity Number of elapsed half-lives Exact Release Date for disposal
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
WasteContainerID, GenerationDate, InitialActivityMBq, BackgroundLevelMBq, WasteType, HalfLifeHours, RequiredHalfLives
Related utilities
Medical devices 3
Bladder Voiding Efficiency Analyzer Medical devicesTc-99m
What it does
Utility calculates the percentage of activity evacuation from the bladder: Voiding efficiency (normal >90%) Residual activity percent (normal <10%) Correction for background and Tc-99m radioactive decay
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary, brain and CNS. Workflow stages: imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
PatientID, StudyDate, PreVoidCounts, PostVoidCounts, BackgroundCounts, AcquisitionTimePreSec, AcquisitionTimePostSec, DecayCorrectionFactor, ResidualVolumeML
Related utilities
Renal Plasma Clearance Estimator Medical devicesTc-99m
What it does
Utility calculates Glomerular Filtration Rate (GFR) or Effective Renal Plasma Flow (ERPF): Based on single-sample blood analysis method Considering injected activity and plasma concentration With normalization to Body Surface Area (BSA)
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary. Workflow stages: imaging QC and quantitative interpretation.
Input fields
PatientID, StudyDate, InjectedActivityMBq, PreInjectionSampleCounts, PostInjectionSampleCounts, BloodSampleCountsPerML, TimePostInjectionMin, PatientWeightKg, PatientHeightCm, PatientAge
Related utilities
Tc-99m Renal Dosimetry Calculator Medical devicesTc-99m
What it does
Utility calculates absorbed doses based on MIRD model: Kidney Absorbed Dose Bladder Wall Dose Effective Whole Body Dose
Why it is needed
Supports a controlled renal workflow from Tc-99m kit and generator quality through renal-function calculation and patient dosimetry.
Where and when to use it
during Tc-99m renal kit release, before dynamic imaging, during quantitative interpretation and when reviewing questionable renogram curves. Medical use: renal and urinary. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, instruments, devices and radiation safety.
Input fields
PatientID, Radiopharmaceutical, InjectedActivityMBq, PatientWeightKg, PatientAgeYears, BiologicalHalfLifeHours, BladderVoidingIntervalHours, KidneyMassGrams
Related utilities
Tc-99m MAA, V/Q and radioembolization 18
Macroaggregated albumin: particle size and count, radiochemical purity, resuspension, lung perfusion, lung shunt and pre-therapy Y-90 planning.
API / calculation and rule-based 4
Tc-99m DTPA Aerosol Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility performs: Control of radiochemical purity, free Tc-99m, aerodynamic size, activity and use time of the aerosol. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: renal and urinary, pulmonary and ventilation. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreePertechnetatePercent, MMADUm, GeometricStandardDeviation, ActivityMBq, TimeSincePreparationMin, pH
Related utilities
Tc-99m MAA Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility performs: Comprehensive batch review of Tc-99m macroaggregated albumin before lung-perfusion scintigraphy or MAA-based radioembolization planning. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, oncology and theranostics. Workflow stages: product release QC, dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, MeanParticleSizeUm, ParticlesAbove150UmPercent, ParticleCountPerDose, pH, EndotoxinsEUPerVial, SterilityTest, ActivityMBq
Related utilities
Tc-99m MAA Radiochemical Purity Checker API / calculation and rule-basedTc-99m
What it does
Utility performs: Separate control of bound Tc-99m, free pertechnetate and hydrolysed-reduced technetium. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, oncology and theranostics. Workflow stages: product release QC, dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreePertechnetatePercent, HydrolyzedReducedTcPercent, TimeSincePreparationMin
Related utilities
Tc-99m MAA Reconstitution and Resuspension Checker API / calculation and rule-basedTc-99m
What it does
Utility performs: Control of reconstitution volume, mixing, delay before withdrawal and resuspension before each dose withdrawal. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, ReconstitutionVolumeMl, MixingCycles, DelayBeforeFirstWithdrawalMin, WithdrawalCount, ResuspensionBeforeEachWithdrawalFlag, VisualHomogeneityScore, pH
Related utilities
API / calculation and rule-based 4
Instrumental 7
Tc-99m DTPA Aerosol Deposition Quality Checker InstrumentalTc-99m
What it does
Utility performs: Assessment of lung deposition, central-to-peripheral distribution and oropharyngeal/gastric contamination. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: renal and urinary, pulmonary and ventilation, hepatobiliary and GI. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, LungCounts, CentralLungCounts, PeripheralLungCounts, MouthCounts, StomachCounts, DeliveredActivityMBq, LoadedActivityMBq, MotionScore
Related utilities
API / calculation and rule-based 4
Tc-99m MAA Aggregation Stability Checker InstrumentalTc-99m
What it does
Utility performs: Comparison of particle-size distributions before and after storage to identify aggregation or particle breakdown. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, oncology and theranostics. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
BatchNumber, BaselineMeanSizeUm, FinalMeanSizeUm, BaselineD90Um, FinalD90Um, VisibleAggregateCount, StorageTimeMin, StorageTemperatureC
Related utilities
Tc-99m MAA Injection Residual Activity Checker InstrumentalTc-99m
What it does
Utility performs: Decay correction and calculation of administered activity and residual fraction in syringe or line. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, oncology and theranostics. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
BatchNumber, PreInjectionActivityMBq, PostInjectionResidualMBq, LineResidualMBq, ElapsedTimeMin, HalfLifeHours, MaxResidualPercent
Related utilities
Tc-99m MAA Particle Size Distribution Analyzer InstrumentalTc-99m
What it does
Utility performs: Review of D10/D50/D90, mean size and the fraction of particles outside the configured size range. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, oncology and theranostics. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, MeanParticleSizeUm, D10Um, D50Um, D90Um, ParticlesBelow10UmPercent, ParticlesAbove90UmPercent, ParticlesAbove150Count
Related utilities
Tc-99m MAA Vial Withdrawal Uniformity Checker InstrumentalTc-99m
What it does
Utility performs: Assessment of particle-count variability across sequential withdrawals from one vial. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, oncology and theranostics. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, instruments, devices and radiation safety.
Input fields
BatchNumber, Dose1ParticleCount, Dose2ParticleCount, Dose3ParticleCount, Dose4ParticleCount, Dose5ParticleCount, MaxAllowedCVPercent
Related utilities
Technegas Particle and Delivery Quality Checker InstrumentalGeneral RPH
What it does
Utility performs: Check of generation temperature, aerodynamic particle size, delivery time, inhalation count and oropharyngeal contamination. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: renal and urinary, pulmonary and ventilation, hepatobiliary and GI. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, GenerationTemperatureC, MedianParticleSizeNm, DeliveryDelayMin, InhalationCount, LungCounts, MouthCounts, OxygenContaminationPercent
Related utilities
API / calculation and rule-based 4
V/Q Study Acquisition Quality Checker InstrumentalGeneral RPH
What it does
Utility performs: Check of ventilation/perfusion count statistics, projection number, motion, inter-series interval and registration. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: renal and urinary, pulmonary and ventilation. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, VentilationTotalCounts, PerfusionTotalCounts, VentilationProjectionCount, PerfusionProjectionCount, InterSeriesIntervalMin, MotionScore, RegistrationScore, EnergyWindowDeviationPercent
Related utilities
Medical devices 7
Tc-99m MAA / Y-90 Concordance Checker Medical devicesTc-99mY-90
What it does
Utility performs: Comparison of lung shunt, tumour-to-liver ratio, extrahepatic deposition and spatial concordance between MAA and Y-90. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, hepatobiliary and GI, oncology and theranostics. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, MAALungShuntPercent, Y90LungShuntPercent, MAATumorToLiverRatio, Y90TumorToLiverRatio, SpatialDiceCoefficient, ExtrahepaticMatchFlag, MaxLungShuntDifferencePercent
Related utilities
Tc-99m MAA Dosimetry Pre-Planner Medical devicesTc-99m
What it does
Tc-99m MAA Dosimetry Pre-Planner Utility performs: Calculation of indicative lung, target and normal-liver absorbed doses using activity, shunt fraction and coefficients from the approved protocol. input.csv structure and numeric-value validation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, hepatobiliary and GI, oncology and theranostics. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, PlannedActivityGBq, LungShuntPercent, LungDoseCoefficientGyPerGBq, TargetDoseCoefficientGyPerGBq, NormalLiverDoseCoefficientGyPerGBq, MaxLungDoseGy, MinTargetDoseGy, MaxNormalLiverDoseGy
Related utilities
Tc-99m MAA Extrahepatic Deposition Checker Medical devicesTc-99m
What it does
Utility performs: Calculation of the activity fraction in stomach, duodenum and other extrahepatic regions after background correction. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, hepatobiliary and GI, oncology and theranostics. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, LiverCounts, LungCounts, StomachCounts, DuodenumCounts, OtherExtrahepaticCounts, BackgroundCounts, MaxExtrahepaticFractionPercent
Related utilities
Tc-99m MAA Lung Perfusion Quality Checker Medical devicesTc-99m
What it does
Utility performs: Review of administered activity and particle count, injection-system residual, acquisition timing, projection completeness and patient motion. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, oncology and theranostics. Workflow stages: product release QC, dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, AdministeredActivityMBq, AdministeredParticleCount, InjectionResidualPercent, AcquisitionStartMin, ProjectionCount, TotalCounts, MotionScore
Related utilities
Tc-99m MAA Lung Shunt Fraction Calculator Medical devicesTc-99m
What it does
Utility performs: Calculation of lung-shunt fraction from background-corrected lung and liver counts with protocol-limit review. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, hepatobiliary and GI, oncology and theranostics. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, LungCounts, LiverCounts, LungBackgroundCounts, LiverBackgroundCounts, MaxAllowedLungShuntPercent
Related utilities
Tc-99m MAA Particle Count and Dose Planner Medical devicesTc-99m
What it does
Tc-99m MAA Particle Count and Dose Planner Utility performs: Calculation of the administered particle count from vial content, withdrawn activity and residual activity. input.csv structure and numeric-value validation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: pulmonary and ventilation, oncology and theranostics. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, VialParticleCount, VialActivityMBq, WithdrawnActivityMBq, ResidualActivityMBq, PulmonaryHypertensionFlag
Related utilities
Ventilation/Perfusion Mismatch Analyzer Medical devicesGeneral RPH
What it does
Utility performs: Calculation of mismatched segment equivalents, perfusion-defect extent and ventilation/perfusion regional concordance. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Connects MAA product quality, lung perfusion, shunt calculation and radioembolization planning without separating release checks from quantitative interpretation.
Where and when to use it
during MAA preparation, V/Q studies, lung-shunt assessment and radioembolization planning. Medical use: renal and urinary, pulmonary and ventilation. Workflow stages: imaging QC and quantitative interpretation.
Input fields
BatchNumber, PerfusionDefectSegmentEquivalents, MatchedDefectSegmentEquivalents, TotalEvaluableSegments, PerfusionDefectExtentPercent, VentilationPerfusionAlignmentScore, MinAlignmentScore
Related utilities
HIDA, hepatobiliary and GI nuclear medicine 20
Hepatobiliary tracers, pertechnetate for Meckel/gastric mucosa, gastric emptying, GI transit, RBC bleeding and liver/spleen sulfur colloid.
API / calculation and rule-based 8
Tc-99m Disofenin Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility performs: Quality review of Tc-99m disofenin for dynamic hepatobiliary scintigraphy. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, LabelingYieldPercent, FreePertechnetatePercent, pH, TimeSinceLabelingMin, EndotoxinsEUPerVial, SterilityTest
Related utilities
Tc-99m HIDA Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility performs: Control of radiochemical purity, free pertechnetate, pH, sterility, endotoxins and use time for a HIDA preparation. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreePertechnetatePercent, pH, EndotoxinsEUPerVial, SterilityTest, TimeSincePreparationMin, ActivityMBq
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Tc-99m Mebrofenin Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility performs: Quality review of Tc-99m mebrofenin before hepatobiliary imaging and quantitative liver-function assessment. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, LabelingYieldPercent, FreePertechnetatePercent, HydrolyzedReducedTcPercent, pH, TimeSinceLabelingMin, SterilityTest, EndotoxinsEUPerVial
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Tc-99m Nanocolloid Particle Size Analyzer API / calculation and rule-basedTc-99m
What it does
Utility checks critical particle size parameters of Tc-99m Nanocolloid: Mean size (<80 nm) D90 (<100 nm) Polydispersity index (PDI <0.2)
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: pulmonary and ventilation, hepatobiliary and GI, lymphatic, infection and inflammation, oncology and theranostics. Workflow stages: product release QC, stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
BatchNumber, MeanParticleSizeNm, ParticleSizeD90Nm, PolydispersityIndex, RadiochemicalPurityPercent, FreeTechnetiumPercent, AggregatesPercent, pH, ActivityMBq, SterilityTest
Related utilities
API / calculation and rule-based 4
Tc-99m Nanocolloid Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility performs: Control of radiochemical purity, particle-size distribution, free Tc-99m, pH, sterility and endotoxins. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI, lymphatic, infection and inflammation. Workflow stages: product release QC.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreePertechnetatePercent, MeanParticleSizeNm, D90Nm, PolydispersityIndex, pH, EndotoxinsEUPerVial, SterilityTest
Related utilities
Tc-99m Sulfur Colloid Liver/Spleen Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility performs: Control of colloid radiochemical purity, particle size, free Tc-99m and liver/spleen acquisition quality. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI, bone and musculoskeletal. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreePertechnetatePercent, MeanParticleSizeNm, LiverCounts, SpleenCounts, BoneMarrowUptakePercent, MotionScore
Related utilities
API / calculation and rule-based 4
Tc-99m Tilmanocept Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility performs: Control of labelling yield, radiochemical purity, free Tc-99m, pH, activity and use time of tilmanocept. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI, lymphatic, infection and inflammation. Workflow stages: synthesis, labelling and kit reconstitution, product release QC.
Input fields
BatchNumber, LabelingYieldPercent, RadiochemicalPurityPercent, FreePertechnetatePercent, pH, ActivityMBq, TimeSincePreparationMin, EndotoxinsEUPerVial, SterilityTest
Related utilities
Technetium99m Sulfur Colloid Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m Sulfur Colloid: Radiochemical purity (≥92%) Particle size (depends on application: liver/lymph) Boiling time (3-6 min) — CRITICAL!
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: pulmonary and ventilation, hepatobiliary and GI, endocrine, thyroid and NET, bone and musculoskeletal, lymphatic, infection and inflammation, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadiochemicalPurityPercent, FreePertechnetatePercent, ParticleSizeMicrons, pH, EndotoxinsEU, SterilityTest, BoilingTimeMin, ProductType
Related utilities
Instrumental 3
Injection Site Shine-Through Checker InstrumentalTc-99m
What it does
Utility performs: Assessment of injection-site-to-node count ratio, distance and shielding/geometry effectiveness. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI, lymphatic, infection and inflammation. Workflow stages: instruments, devices and radiation safety.
Input fields
BatchNumber, InjectionSiteCountsPerSecond, NodeCountsPerSecond, BackgroundCountsPerSecond, InjectionToNodeDistanceCm, ShieldingReductionPercent, MaxInjectionToNodeRatio
Related utilities
Lymphoscintigraphy Acquisition Quality Checker InstrumentalTc-99m
What it does
Utility performs: Check of early and delayed time points, count statistics, anatomical coverage, motion and injection-site saturation. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI, lymphatic, infection and inflammation. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, EarlyImagingStartMin, DelayedImagingTimeMin, TotalCounts, AnatomicalCoverageScore, MotionScore, InjectionSiteSaturationPercent, NodeFieldIncludedFlag
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Sentinel Node Detection Threshold Checker InstrumentalTc-99m
What it does
Utility performs: Calculation of node-to-background ratio and review of gamma-probe sensitivity and minimum count threshold. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI, lymphatic, infection and inflammation.
Input fields
BatchNumber, NodeCountsPerSecond, BackgroundCountsPerSecond, ProbeSensitivityCpsPerMBq, MinNodeToBackgroundRatio, MinProbeSensitivityCpsPerMBq, MinNodeCountsPerSecond
Related utilities
Medical devices 9
Gallbladder Ejection Fraction Calculator Medical devicesTc-99m
What it does
Utility performs: Calculation of gallbladder ejection fraction from background-corrected pre- and post-stimulation counts. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: renal and urinary, hepatobiliary and GI, cardiovascular. Workflow stages: imaging QC and quantitative interpretation.
Input fields
BatchNumber, PreStimulusGallbladderCounts, PostStimulusGallbladderCounts, PreBackgroundCounts, PostBackgroundCounts, MinExpectedEjectionFractionPercent, InfusionDurationMin
Related utilities
API / calculation and rule-based 4
Hepatobiliary Extraction Fraction Calculator Medical devicesTc-99m
What it does
Utility performs: Calculation of hepatic extraction fraction from background-corrected early and late counts with review against the protocol minimum. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI. Workflow stages: imaging QC and quantitative interpretation.
Input fields
BatchNumber, EarlyLiverCounts, LateLiverCounts, EarlyBackgroundCounts, LateBackgroundCounts, MinExpectedExtractionPercent, MotionScore
Related utilities
Hepatobiliary Transit Quality Checker Medical devicesTc-99m
What it does
Utility performs: Review of liver, bile-duct, gallbladder and bowel visualization time points. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: renal and urinary, hepatobiliary and GI. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, LiverVisualizationMin, BileDuctVisualizationMin, GallbladderVisualizationMin, BowelVisualizationMin, DelayedImagingPerformedFlag, MotionScore
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Sentinel Node Injection Quality Checker Medical devicesTc-99m
What it does
Utility performs: Review of planned/administered activity, syringe residual, injection-site count and interval to surgery. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI, lymphatic, infection and inflammation. Workflow stages: product release QC.
Input fields
BatchNumber, PlannedActivityMBq, AdministeredActivityMBq, ResidualActivityMBq, InjectionSiteCount, TimeToSurgeryMin, MaxActivityDeviationPercent, MaxTimeToSurgeryMin
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Tc-99m Gastric Emptying Quality Checker Medical devicesTc-99m
What it does
Utility performs: Review of standard-meal completion, acquisition time points and activity retention at 1, 2 and 4 hours. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, MealConsumedPercent, RetentionAt1HourPercent, RetentionAt2HoursPercent, RetentionAt4HoursPercent, AcquisitionTimingDeviationMin, MotionScore
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Tc-99m Gastrointestinal Transit Analyzer Medical devicesTc-99m
What it does
Utility performs: Review of gastric half-time, caecal arrival and colonic geometric centre at protocol time points. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI. Workflow stages: imaging QC and quantitative interpretation.
Input fields
BatchNumber, GastricHalfTimeMin, CecalArrivalHours, ColonGeometricCenter24h, ColonGeometricCenter48h, MinGC24h, MinGC48h, AcquisitionCompleteFlag
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Tc-99m Pertechnetate Gastric Mucosa Quality Checker Medical devicesTc-99m
What it does
Utility performs: Quality review of dynamic imaging for suspected ectopic gastric mucosa. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI, endocrine, thyroid and NET. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, CandidateFocusCounts, BackgroundCounts, FocusAppearanceMin, GastricAppearanceMin, FocusPersistenceMin, AcquisitionDurationMin, MinFocusToBackgroundRatio
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API / calculation and rule-based 4
Tc-99m Pertechnetate Meckel Scan Quality Checker Medical devicesTc-99m
What it does
Utility performs: Review of lesion-to-stomach temporal concordance, lesion-to-background ratio, acquisition duration and patient motion. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI, endocrine, thyroid and NET. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, LesionCounts, BackgroundCounts, LesionAppearanceMin, StomachAppearanceMin, AcquisitionDurationMin, MotionScore, MinLesionToBackgroundRatio, MaxAppearanceDifferenceMin
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API / calculation and rule-based 4
Tc-99m RBC Gastrointestinal Bleeding Quality Checker Medical devicesTc-99m
What it does
Utility performs: Review of RBC labelling quality, dynamic and delayed imaging duration, motion and focus-to-background ratio. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports hepatobiliary and gastrointestinal studies in which tracer quality, acquisition timing and functional calculations must be reviewed together.
Where and when to use it
during HIDA product release and functional GI protocols where product quality must be linked with acquisition and calculation integrity. Medical use: hepatobiliary and GI, blood, cells and marrow. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, LabelingEfficiencyPercent, FreeActivityPercent, DynamicAcquisitionDurationMin, DelayedImagingPerformedFlag, MotionScore, FocusCounts, BackgroundCounts, MinFocusToBackgroundRatio
Related utilities
API / calculation and rule-based 4
labelled cells and blood-pool workflows 24
Leukocytes, red blood cells, platelets and autologous cell workflows: labeling efficiency, viability, free activity, recovery and release before reinjection.
API / calculation and rule-based 9
Chromium51 EDTA Checker API / calculation and rule-basedCr-51
What it does
Utility checks critical parameters of chromium-51 EDTA: Radiochemical purity (≥95%) — fraction of Cr-51 bound to EDTA Free chromium-51 (≤5%) — unreacted chromium, accumulates in liver/spleen pH (4.0–7.0) — critical for complex stability and safety
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: renal and urinary, hepatobiliary and GI, blood, cells and marrow. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, ActivityMBqPerML, RadiochemicalPurityPercent, FreeChromiumPercent, pH, EndotoxinsEU, SterilityTest, Appearance, PreparationDate
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Gallium-67 Citrate Quality Checker API / calculation and rule-basedGa-67
What it does
Utility performs: Control of radiochemical and radionuclidic purity, free gallium, pH, sterility, endotoxins and activity. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow, lymphatic, infection and inflammation. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, RadionuclidicPurityPercent, FreeGalliumPercent, pH, EndotoxinsEUPerVial, SterilityTest, ActivityMBq
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In-111 Platelet Labeling Quality Checker API / calculation and rule-basedIn-111Tc-99m
What it does
Utility performs: Control of labelling efficiency, viability, free In-111, aggregates, process time and sterility. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow. Workflow stages: synthesis, labelling and kit reconstitution, product release QC.
Input fields
BatchNumber, LabelingEfficiencyPercent, PlateletViabilityPercent, FreeIndiumPercent, AggregatePercent, ProcessTimeMin, SterilityTest, EndotoxinsEUPerVial
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Indium111 WBC Labeling Checker API / calculation and rule-basedIn-111
What it does
Utility checks critical parameters of autologous leukocytes labeled with Indium-111: Labeling efficiency (≥80%) Free Indium-111 impurity (≤20%) Cell viability (≥95%)
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: hepatobiliary and GI, bone and musculoskeletal, blood, cells and marrow, lymphatic, infection and inflammation. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, LabelingEfficiencyPercent, FreeIndium111Percent, CellViabilityPercent, WBCCountMillion, pH, EndotoxinsEU, SterilityTest, HemoglobinContaminationMgPerDl, IncubationTimeMinutes
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Tc-99m Besilesomab Quality Checker API / calculation and rule-basedGa-67Tc-99m
What it does
Utility performs: Control of labelling yield, RCP, free Tc-99m, aggregates and contraindication flags related to HAMA/previous exposure. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow, lymphatic, infection and inflammation. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, LabelingYieldPercent, RadiochemicalPurityPercent, FreePertechnetatePercent, AggregatePercent, HAMAContraindicationFlag, PreviousBesilesomabExposureFlag, pH, SterilityTest
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Tc-99m HMPAO WBC Labeling Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility performs: Comprehensive control of labelling efficiency, cell viability, free activity, process time and release before reinjection. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow, lymphatic, infection and inflammation. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, LabelingEfficiencyPercent, CellViabilityPercent, FreeActivityPercent, CellRecoveryPercent, AggregatePercent, ProcessTimeMin, ProcessTemperatureC, SterilityTest
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Tc-99m Platelet Labeling Quality Checker API / calculation and rule-basedIn-111Tc-99m
What it does
Utility performs: Control of Tc-99m platelet labelling efficiency, viability, free activity and aggregates. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow. Workflow stages: synthesis, labelling and kit reconstitution, product release QC.
Input fields
BatchNumber, LabelingEfficiencyPercent, PlateletViabilityPercent, FreeTechnetiumPercent, RadiochemicalPurityPercent, AggregatePercent, ProcessTimeMin, SterilityTest
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Tc-99m Sulesomab Quality Checker API / calculation and rule-basedGa-67Tc-99m
What it does
Utility performs: Control of labelling yield, radiochemical purity, free Tc-99m, aggregates, pH, sterility and use time. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow, lymphatic, infection and inflammation. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, LabelingYieldPercent, RadiochemicalPurityPercent, FreePertechnetatePercent, AggregatePercent, pH, TimeSincePreparationMin, EndotoxinsEUPerVial, SterilityTest
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Technetium99m Red Blood Cell Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m RBC: Labeling efficiency (≥95%) Free pertechnetate (≤3%) Colloidal technetium (≤2%)
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: hepatobiliary and GI, cardiovascular, endocrine, thyroid and NET, bone and musculoskeletal, blood, cells and marrow, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, LabelingEfficiencyPercent, FreePertechnetatePercent, ReducedHydrolyzedTcPercent, pH, EndotoxinsEU, SterilityTest, HematocritPercent, LabelingMethod
Related utilities
API / calculation and rule-based 4
Instrumental 7
Antigranulocyte Antibody Imaging Quality Checker InstrumentalGa-67
What it does
Utility performs: Check of administered activity, imaging time points, count statistics, motion, target-to-background ratio and marrow symmetry. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: bone and musculoskeletal, blood, cells and marrow, lymphatic, infection and inflammation. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, AdministeredActivityMBq, EarlyImagingTimeHours, DelayedImagingTimeHours, TotalCounts, MotionScore, TargetCounts, BackgroundCounts, MarrowSymmetryScore, MinTargetToBackgroundRatio
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API / calculation and rule-based 4
Cell Labeling Viability Checker InstrumentalIn-111Tc-99m
What it does
Utility performs: Comparison of pre- and post-labelling viability, cell recovery, apoptosis and aggregate fraction. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow. Workflow stages: synthesis, labelling and kit reconstitution.
Input fields
BatchNumber, PreLabelingViabilityPercent, PostLabelingViabilityPercent, PreLabelingCellCountMillion, PostLabelingCellCountMillion, ApoptoticCellsPercent, AggregatePercent, MinPostLabelingViabilityPercent, MinRecoveryPercent
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Cr-51 RBC Labeling Efficiency Checker InstrumentalCr-51
What it does
Utility performs: Calculation of activity bound to red cells relative to total cell and plasma activity. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow. Workflow stages: synthesis, labelling and kit reconstitution.
Input fields
BatchNumber, CellFractionActivityKcpm, PlasmaFractionActivityKcpm, WashFractionActivityKcpm, MinLabelingEfficiencyPercent
Related utilities
API / calculation and rule-based 4
Cr-51 RBC Sample Timing Checker InstrumentalCr-51
What it does
Utility performs: Check of actual serial-sample timing against the approved red-cell survival protocol. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow.
Input fields
BatchNumber, InitialSampleHours, Day7SampleDay, Day14SampleDay, Day21SampleDay, AllowedInitialDeviationHours, AllowedDayDeviation
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API / calculation and rule-based 4
WBC Free Activity Checker InstrumentalTc-99m
What it does
Utility performs: Calculation of unbound activity in supernatant and wash fractions. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow, lymphatic, infection and inflammation. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, CellPelletActivityMBq, SupernatantActivityMBq, Wash1ActivityMBq, Wash2ActivityMBq, MaxFreeActivityPercent
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WBC Labeling Time and Temperature Checker InstrumentalTc-99m
What it does
Utility performs: Control of intervals between blood collection, labelling start/end and reinjection, plus process temperature. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow, lymphatic, infection and inflammation. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, CollectionToLabelingStartMin, LabelingDurationMin, LabelingEndToReinjectionMin, ProcessTemperatureC, MaxTotalProcessTimeMin
Related utilities
WBC Viability and Recovery Checker InstrumentalTc-99m
What it does
Utility performs: Comparison of pre- and post-process cell counts, viability and aggregate fraction. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow, lymphatic, infection and inflammation. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, PreProcessCellCountMillion, PostProcessCellCountMillion, ViabilityPercent, AggregatePercent, MinRecoveryPercent
Related utilities
Medical devices 8
Autologous Cell Labeling Release Checker Medical devicesIn-111Tc-99m
What it does
Utility performs: Final review of patient identity, viability, labelling efficiency, free activity, aggregates, sterility and endotoxins. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow. Workflow stages: synthesis, labelling and kit reconstitution, product release QC.
Input fields
BatchNumber, PatientIdentityConfirmedFlag, CellViabilityPercent, LabelingEfficiencyPercent, FreeActivityPercent, AggregatePercent, SterilityTest, EndotoxinsEUPerVial, TimeToAdministrationMin
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Cr-51 Blood Volume Calculator Medical devicesCr-51
What it does
Utility performs: Calculation of total blood volume and red-cell volume by indicator dilution with haematocrit correction. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow.
Input fields
BatchNumber, NetInjectedActivityKcpm, SampleActivityKcpm, SampleVolumeMl, VenousHematocritFraction, BodyHematocritCorrectionFactor, MinExpectedBloodVolumeMl, MaxExpectedBloodVolumeMl
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API / calculation and rule-based 4
Cr-51 RBC Elution Correction Calculator Medical devicesCr-51
What it does
Utility performs: Application of a protocol elution-correction factor to measured serial-sample activity. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow.
Input fields
BatchNumber, SampleDay, MeasuredActivityKcpmPerMl, ElutionCorrectionFactor, ReferenceDay0ActivityKcpmPerMl, MinCorrectedRetentionPercent
Related utilities
API / calculation and rule-based 4
Cr-51 RBC Mass and Survival Analyzer Medical devicesCr-51
What it does
Utility performs: Calculation of labelled red-cell volume by indicator dilution and indicative T50 from serial samples. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow.
Input fields
BatchNumber, NetInjectedActivityKcpm, Day0SampleActivityKcpmPerMl, Day1ActivityKcpmPerMl, Day14ActivityKcpmPerMl, SampleVolumeMl, VenousHematocritFraction, BodyHematocritCorrectionFactor, MinExpectedT50Days
Related utilities
API / calculation and rule-based 4
Cr-51 RBC Recovery Curve Analyzer Medical devicesCr-51
What it does
Utility performs: Review of serial-measurement monotonicity, log-linear fit quality, early loss and calculated T50. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow. Workflow stages: imaging QC and quantitative interpretation.
Input fields
BatchNumber, Day1RetentionPercent, Day7RetentionPercent, Day14RetentionPercent, Day21RetentionPercent, CurveR2, MinExpectedT50Days, MaxEarlyLossPercent
Related utilities
API / calculation and rule-based 4
In-111 Platelet Recovery Checker Medical devicesIn-111Tc-99m
What it does
Utility performs: Calculation of early labelled-platelet recovery from injected activity, sample activity, blood volume and decay correction. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow. Workflow stages: stability, storage, decay and waste.
Input fields
BatchNumber, InjectedActivityMBq, SampleActivityKBqPerMl, EstimatedBloodVolumeMl, DecayCorrectionFactor, MinExpectedRecoveryPercent, MaxExpectedRecoveryPercent
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WBC Labeling Efficiency Calculator Medical devicesTc-99m
What it does
Utility performs: Calculation of labelling efficiency from cell-bound and supernatant activity. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow, lymphatic, infection and inflammation. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, CellBoundActivityMBq, SupernatantActivityMBq, WashActivityMBq, MinLabelingEfficiencyPercent
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WBC Reinjection Release Checker Medical devicesTc-99m
What it does
Utility performs: Final review of identity, labelling efficiency, viability, free activity, aggregates and time to reinjection. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports reproducible blood-cell labelling, free-activity control, cell viability and release before reinjection.
Where and when to use it
during autologous cell radiopharmaceutical preparation, labeling assessment and release before reinjection. Medical use: blood, cells and marrow, lymphatic, infection and inflammation. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, PatientIdentityConfirmedFlag, LabelingEfficiencyPercent, ViabilityPercent, FreeActivityPercent, AggregatePercent, SterilityTest, EndotoxinsEUPerVial, TimeToReinjectionMin
Related utilities
Tc-99m pertechnetate and functional imaging 3
Pertechnetate as a standalone radiopharmaceutical and starting material: thyroid uptake, salivary glands, Meckel scan, gastric mucosa and generator/eluate control.
API / calculation and rule-based 1
Tc-99m Sodium Pertechnetate Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility performs: Control of radiochemical and radionuclidic purity, Mo-99 breakthrough, aluminium, pH, sterility and endotoxins in generator eluate. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports sodium pertechnetate as a standalone radiopharmaceutical and functional studies of the thyroid, salivary glands and ectopic gastric mucosa.
Where and when to use it
when using generator-derived Tc-99m and functional thyroid, salivary-gland and ectopic-gastric-mucosa studies. Medical use: hepatobiliary and GI, endocrine, thyroid and NET. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, RadionuclidicPurityPercent, Mo99BreakthroughMicroCiPerMilliCiTc99m, AluminumPPM, pH, EndotoxinsEUPerMl, SterilityTest, ActivityMBqPerMl
Related utilities
API / calculation and rule-based 4
Medical devices 2
Tc-99m Pertechnetate Salivary Gland Quality Checker Medical devicesTc-99m
What it does
Utility performs: Calculation of right and left parotid excretion fractions after stimulation and inter-side asymmetry. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports sodium pertechnetate as a standalone radiopharmaceutical and functional studies of the thyroid, salivary glands and ectopic gastric mucosa.
Where and when to use it
when using generator-derived Tc-99m and functional thyroid, salivary-gland and ectopic-gastric-mucosa studies. Medical use: hepatobiliary and GI, endocrine, thyroid and NET. Workflow stages: product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RightPreStimCounts, RightPostStimCounts, LeftPreStimCounts, LeftPostStimCounts, BackgroundCounts, MinExpectedExcretionFractionPercent, MaxAllowedAsymmetryPercent
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Tc-99m Pertechnetate Thyroid Uptake Quality Checker Medical devicesTc-99m
What it does
Utility performs: Calculation of thyroid uptake from thyroid, background and standard counts with measurement-quality and protocol-range checks. input.csv structure and numeric-value validation LabWare-compatible output.json generation
Why it is needed
Supports sodium pertechnetate as a standalone radiopharmaceutical and functional studies of the thyroid, salivary glands and ectopic gastric mucosa.
Where and when to use it
when using generator-derived Tc-99m and functional thyroid, salivary-gland and ectopic-gastric-mucosa studies. Medical use: hepatobiliary and GI, endocrine, thyroid and NET. Workflow stages: product release QC, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
BatchNumber, ThyroidCounts, NeckBackgroundCounts, StandardCounts, StandardBackgroundCounts, DecayCorrectionFactor, MinExpectedUptakePercent, MaxExpectedUptakePercent
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cardiac, bone and classic SPECT radiopharmaceuticals 7
Sestamibi, tetrofosmin, MDP, pyrophosphate, thallium and related quality checks for cardiology, bone imaging and classic SPECT protocols.
API / calculation and rule-based 7
Tc-99m MDP Bone Scan Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m MDP: Radiochemical purity (≥90%) Free technetium (<5%) Colloidal technetium (<5%)
Why it is needed
Supports classic SPECT applications in which product quality must remain connected to acquisition quality and quantitative interpretation.
Where and when to use it
during cardiac and bone Tc-99m kit release, before SPECT/acquisition and when confirming data fitness for interpretation. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, bone and musculoskeletal. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeTechnetiumPercent, HydrolyzedReducedTcPercent, pH, TimeSincePreparationMin, ActivityMBq, SterilityTest, EndotoxinsEU_per_mL
Related utilities
API / calculation and rule-based 4
Tc-99m Sestamibi Cardiac Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m Sestamibi: Radiochemical purity (≥90%) Free technetium (<5%) Colloidal technetium (<5%)
Why it is needed
Supports classic SPECT applications in which product quality must remain connected to acquisition quality and quantitative interpretation.
Where and when to use it
during cardiac and bone Tc-99m kit release, before SPECT/acquisition and when confirming data fitness for interpretation. Medical use: hepatobiliary and GI, cardiovascular, endocrine, thyroid and NET. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeTechnetiumPercent, HydrolyzedReducedTcPercent, pH, TimeSincePreparationMin, ActivityMBq, SterilityTest, EndotoxinsEU_per_mL, HeatingCondition
Related utilities
API / calculation and rule-based 4
Tc99m MDP Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m MDP: Radiochemical purity (≥95%) Free pertechnetate (≤5%) Colloidal technetium (≤5%)
Why it is needed
Supports classic SPECT applications in which product quality must remain connected to acquisition quality and quantitative interpretation.
Where and when to use it
during cardiac and bone Tc-99m kit release, before SPECT/acquisition and when confirming data fitness for interpretation. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, bone and musculoskeletal. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, TotalActivityMBq, RadiochemicalPurityPercent, FreePertechnetatePercent, ReducedHydrolyzedTcPercent, pH, EndotoxinsEU, SterilityTest, AluminumContentPPM, ProductType
Related utilities
API / calculation and rule-based 4
Tc99m Sestamibi Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m Sestamibi: Radiochemical purity (≥90%) Free pertechnetate (≤5%) Colloidal technetium (≤5%)
Why it is needed
Supports classic SPECT applications in which product quality must remain connected to acquisition quality and quantitative interpretation.
Where and when to use it
during cardiac and bone Tc-99m kit release, before SPECT/acquisition and when confirming data fitness for interpretation. Medical use: hepatobiliary and GI, cardiovascular, endocrine, thyroid and NET. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadiochemicalPurityPercent, FreePertechnetatePercent, ReducedHydrolyzedTcPercent, pH, EndotoxinsEU, SterilityTest, ReactionTimeMin, CoolingTimeMin
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Tc99m Tetrofosmin Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m Tetrofosmin: Radiochemical purity (≥90%) Free pertechnetate (≤5%) Colloidal technetium (≤5%)
Why it is needed
Supports classic SPECT applications in which product quality must remain connected to acquisition quality and quantitative interpretation.
Where and when to use it
during cardiac and bone Tc-99m kit release, before SPECT/acquisition and when confirming data fitness for interpretation. Medical use: renal and urinary, pulmonary and ventilation, hepatobiliary and GI, cardiovascular, endocrine, thyroid and NET. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, TotalActivityMBq, RadiochemicalPurityPercent, FreePertechnetatePercent, ReducedHydrolyzedTcPercent, pH, EndotoxinsEU, SterilityTest, ReactionTimeMin, TimeSincePreparationMin
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Technetium99m Pyrophosphate Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m PYP: Radiochemical purity (≥95%) Free pertechnetate (≤5%) Colloidal technetium (≤5%)
Why it is needed
Supports classic SPECT applications in which product quality must remain connected to acquisition quality and quantitative interpretation.
Where and when to use it
during cardiac and bone Tc-99m kit release, before SPECT/acquisition and when confirming data fitness for interpretation. Medical use: hepatobiliary and GI, cardiovascular, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, TotalActivityMBq, RadiochemicalPurityPercent, FreePertechnetatePercent, ReducedHydrolyzedTcPercent, pH, EndotoxinsEU, SterilityTest, AluminumContentPPM, ProductType
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API / calculation and rule-based 4
Thallium201 Chloride Quality Checker API / calculation and rule-basedTc-99mTl-201
What it does
Utility checks critical parameters of Thallium-201: Radionuclidic purity (≥99.5%) Thallium-200 impurity (≤0.5%) Thallium-202 impurity (≤0.5%)
Why it is needed
Supports classic SPECT applications in which product quality must remain connected to acquisition quality and quantitative interpretation.
Where and when to use it
during cardiac and bone Tc-99m kit release, before SPECT/acquisition and when confirming data fitness for interpretation. Medical use: pulmonary and ventilation, cardiovascular, brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Thallium200ImpurityPercent, Thallium202ImpurityPercent, RadiochemicalPurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM
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PET/SPECT oncology diagnostics and receptor imaging 26
F-18, Ga-68, Cu-64, Zr-89, In-111 and other diagnostic tracers: synthesis, purity, receptor targeting, immuno-PET and generator-based workflows.
API / calculation and rule-based 26
Aluminum Fluoride18 F Quality Checker API / calculation and rule-basedF-18
What it does
The utility checks RCP, free fluoride, residual aluminum, sterility, endotoxins. Does not use machine learning — rule-based logic only. AluminumFluoride18FQualityChecker.exe → demo mode AluminumFluoride18FQualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, Radiopharmaceutical, Radionuclidic_Purity_Percent, Radiochemical_Purity_Percent, Specific_Activity_GBq_umol, Free_Fluoride_Percent, Aluminum_Residue_ppm, Precursor_Residue_ppm, Ethanol_Content_Percent, Acetonitrile_Residue_ppm
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API / calculation and rule-based 4
Carbon11 Choline Quality Checker API / calculation and rule-basedC-11
What it does
The utility checks RCP, residual DMAE, methyl iodide, sterility, endotoxins. Does not use machine learning — rule-based logic only. Carbon11CholineQualityChecker.exe → demo mode Carbon11CholineQualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, Radionuclidic_Purity_Percent, Radiochemical_Purity_Percent, Specific_Activity_GBq_umol, Precursor_DMAE_ppm, Methyl_Iodide_Residue_ppm, Ethanol_Content_Percent, pH_Value, Osmolality_mOsm_kg, SterilityTest
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API / calculation and rule-based 4
Carbon11 Methionine Quality Checker API / calculation and rule-basedC-11
What it does
The utility checks RCP, residual precursor, methyl iodide, sterility, endotoxins. Does not use machine learning — rule-based logic only. Carbon11MethionineQualityChecker.exe → demo mode Carbon11MethionineQualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, Radionuclidic_Purity_Percent, Radiochemical_Purity_Percent, Specific_Activity_GBq_umol, Precursor_Residue_ppm, Methyl_Iodide_Residue_ppm, Solvent_Residue_ppm, pH_Value, Osmolality_mOsm_kg, SterilityTest
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API / calculation and rule-based 4
Copper-64 Quality Checker API / calculation and rule-basedCu-64
What it does
The utility checks radiochemical purity, specific activity, Ni/Zn impurities, sterility, endotoxins. Does not use machine learning — rule-based logic only. Copper64QualityChecker.exe → demo mode Copper64QualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: renal and urinary, hepatobiliary and GI, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, Radionuclidic_Purity_Percent, Radiochemical_Purity_Percent, Specific_Activity_GBq_umol, Nickel_Content_ppm, Zinc_Content_ppm, Iron_Content_ppm, Total_Metal_Impurities_ppm, pH_Value, Ethanol_Content_Percent
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API / calculation and rule-based 4
Copper64 ATSM Quality Checker API / calculation and rule-basedCu-64
What it does
Utility checks critical parameters of [64Cu]Cu-ATSM: Radionuclidic purity (≥99.9%) Radiochemical purity (≥95%) Free Copper-64 impurity (≤2.0%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: renal and urinary, hepatobiliary and GI, cardiovascular, brain and CNS, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadionuclidicPurityPercent, RadiochemicalPurityPercent, FreeCopperPercent, ATSMLigandImpurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, SpecificActivityGBqPerUmol
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API / calculation and rule-based 4
Copper64 DOTATATE Quality Checker API / calculation and rule-basedCu-64Ga-68
What it does
Utility checks critical parameters of [64Cu]Cu-DOTATATE: Radionuclidic purity (≥99.9%) Radiochemical purity (≥95%) Free Copper-64 impurity (≤2.0%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadionuclidicPurityPercent, RadiochemicalPurityPercent, FreeCopperPercent, DOTATATELigandImpurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, SpecificActivityGBqPerUmol
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API / calculation and rule-based 4
Copper64 Sarcophagine Quality Checker API / calculation and rule-basedCu-64
What it does
Utility checks critical parameters of [64Cu]Cu-Sarcophagine: Radionuclidic purity (≥99.9%) Radiochemical purity (≥98%) Free Copper-64 impurity (≤1.0%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, lymphatic, infection and inflammation, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadionuclidicPurityPercent, RadiochemicalPurityPercent, FreeCopperPercent, SarcophagineLigandImpurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, SpecificActivityGBqPerUmol
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API / calculation and rule-based 4
Fluorine18 Amyloid Quality Checker API / calculation and rule-basedF-18
What it does
Utility checks critical parameters of F-18 amyloid imaging agents (Florbetapir, Flutemetamol, Florbetaben): Radionuclidic purity (≥99.9%) Radiochemical purity (≥95%) Free Fluoride-18 impurity (≤5.0%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: hepatobiliary and GI, brain and CNS, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadionuclidicPurityPercent, RadiochemicalPurityPercent, FreeFluoridePercent, PrecursorImpurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, ResidualEthanolPercent
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API / calculation and rule-based 4
Fluorine18 Choline Quality Checker API / calculation and rule-basedF-18
What it does
Utility checks critical parameters of [18F]Fluorocholine: Radionuclidic purity (≥99.9%) Radiochemical purity (≥95%) Free Fluoride-18 impurity (≤5.0%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: brain and CNS, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadionuclidicPurityPercent, RadiochemicalPurityPercent, FreeFluoridePercent, PrecursorImpurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, ResidualEthanolPercent
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API / calculation and rule-based 4
Fluorine18 DOPA Quality Checker API / calculation and rule-basedF-18
What it does
Utility checks critical parameters of [18F]FDOPA: Radionuclidic purity (≥99.9%) Radiochemical purity (≥95%) Free Fluoride-18 impurity (≤5.0%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadionuclidicPurityPercent, RadiochemicalPurityPercent, FreeFluoridePercent, PrecursorImpurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, ResidualEthanolPercent
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API / calculation and rule-based 4
Fluorine18 FDG Quality Checker API / calculation and rule-basedF-18
What it does
The utility checks specific activity, radiochemical purity, residual solvents (ethanol, acetonitrile), aluminium, pH, endotoxins, sterility, heavy metals. Does not use machine learning — rule-based logic only. Fluorine18FDGQualityChecker.exe → demo mode (console output) Fluorine18FDGQualityChecker.exe input.csv output.json → evaluate your data
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: hepatobiliary and GI, brain and CNS, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, imaging QC and quantitative interpretation.
Input fields
BatchNumber, SpecificActivityGBqPerUmol, RadiochemicalPurityPercent, ResidualEthanolPPM, ResidualAcetonitrilePPM, AluminiumPPM, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM
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API / calculation and rule-based 4
Fluorine18 FES Quality Checker API / calculation and rule-basedF-18
What it does
Utility checks critical parameters of [18F]Fluoroestradiol (FES): Radionuclidic purity (≥99.9%) Radiochemical purity (≥95%) Free Fluoride-18 impurity (≤5.0%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadionuclidicPurityPercent, RadiochemicalPurityPercent, FreeFluoridePercent, PrecursorImpurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, ResidualEthanolPercent
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API / calculation and rule-based 4
Fluorine18 FLT Quality Checker API / calculation and rule-basedF-18
What it does
Utility checks critical parameters of [18F]FLT (3'-deoxy-3'-[18F]fluorothymidine): Radionuclidic purity (≥99.9%) Radiochemical purity (≥95%) Free Fluoride-18 impurity (≤5.0%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: brain and CNS, bone and musculoskeletal, lymphatic, infection and inflammation, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadionuclidicPurityPercent, RadiochemicalPurityPercent, FreeFluoridePercent, PrecursorImpurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, ResidualEthanolPercent
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API / calculation and rule-based 4
Fluorine18 FMISO Quality Checker API / calculation and rule-basedF-18
What it does
Utility checks critical parameters of [18F]FMISO (Fluoromisonidazole): Radionuclidic purity (≥99.9%) Radiochemical purity (≥95%) Free Fluoride-18 impurity (≤5.0%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: cardiovascular, brain and CNS, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadionuclidicPurityPercent, RadiochemicalPurityPercent, FreeFluoridePercent, PrecursorImpurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, ResidualEthanolPercent
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API / calculation and rule-based 4
Fluorine18 Na F Quality Checker API / calculation and rule-basedF-18
What it does
The utility checks radiochemical purity (as [18F]fluoride), radionuclidic purity (F-18), aluminium, pH, endotoxins, sterility, heavy metals, residual ethanol. Does not use machine learning — rule-based logic only. Fluorine18NaFQualityChecker.exe → demo mode (console output)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: pulmonary and ventilation, hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, RadionuclidicPurityPercent, AluminiumPPM, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, ResidualEthanolPPM
Related utilities
API / calculation and rule-based 4
Fluorine18 PSMA Quality Checker API / calculation and rule-basedF-18
What it does
The utility checks specific activity, radiochemical purity, free ligand, pH, endotoxins, sterility, heavy metals, aluminium, residual ethanol. Does not use machine learning — rule-based logic only. Fluorine18PSMAQualityChecker.exe → demo mode (console output) Fluorine18PSMAQualityChecker.exe input.csv output.json → evaluate your data
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, dosimetry and therapy planning.
Input fields
BatchNumber, SpecificActivityGBqPerUmol, RadiochemicalPurityPercent, FreeLigandPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, AluminiumPPM, ResidualEthanolPPM
Related utilities
API / calculation and rule-based 4
Gallium68 DOTATATE Quality Checker API / calculation and rule-basedGa-68
What it does
The utility checks specific activity, radiochemical purity, germanium-68 impurity, free peptide, pH, endotoxins, sterility, heavy metals, aluminium, residual solvents (ethanol, acetonitrile). Does not use machine learning — rule-based logic only. Gallium68DOTATATEQualityChecker.exe → demo mode (console output)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, SpecificActivityGBqPerUmol, RadiochemicalPurityPercent, Germanium68ImpurityPercent, FreePeptidePercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, AluminiumPPM
Related utilities
API / calculation and rule-based 4
Gallium68 FAPI Quality Checker API / calculation and rule-basedGa-68
What it does
Utility checks quality of FAPI (Fibroblast Activation Protein Inhibitor) radiopharmaceutical: Specific activity (≥50 GBq/μmol) Radiochemical purity (≥95%) Germanium-68 impurity (≤0.001%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
BatchNumber, SpecificActivityGBqPerUmol, RadiochemicalPurityPercent, Germanium68ImpurityPercent, FreeGallium68Percent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, AluminiumPPM
Related utilities
API / calculation and rule-based 4
Gallium68 Generator Quality Checker API / calculation and rule-basedGa-68
What it does
Utility checks critical eluate parameters: germanium-68 breakthrough (calculated as % of Ga-68 activity), eluate volume, eluate pH, metallic impurities (aluminium, iron), endotoxins, sterility. Does not use machine learning — only mathematical calculation of breakthrough percentages and pharmacopoeial limit checks.
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, Ga68ActivityMBq, Ge68ActivityMBq, EluateVolumeMl, EluatePH, AluminiumPPM, IronPPM, EndotoxinsEU, SterilityTest
Related utilities
API / calculation and rule-based 4
Gallium68 HBEDCC Quality Checker API / calculation and rule-basedGa-68
What it does
Utility checks critical parameters of [68Ga]Ga-PSMA-11 (HBED-CC): Radionuclidic purity (≥99.9%) Radiochemical purity (≥95%) Free Gallium-68 impurity (≤5.0%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadionuclidicPurityPercent, RadiochemicalPurityPercent, FreeGalliumPercent, PrecursorImpurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, ResidualEthanolPercent
Related utilities
API / calculation and rule-based 4
Gallium68 LNP Tracker Quality Checker API / calculation and rule-basedGa-68
What it does
DEPRECATED UTILITY This utility has been REPLACED by the universal version: RadiolabeledNanoparticleQualityChecker.exe Please use the universal utility instead:
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: pulmonary and ventilation, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, stability, storage, decay and waste.
Input fields
BatchNumber, SpecificActivityGBqPerUmol, RadiochemicalPurityPercent, Germanium68ImpurityPercent, FreeGallium68Percent, ParticleSizeNm, ParticleSizePDI, pH, EndotoxinsEU, SterilityTest
Related utilities
API / calculation and rule-based 4
Gallium68 PSMA Quality Checker API / calculation and rule-basedGa-68
What it does
The utility checks specific activity, radiochemical purity, germanium-68 impurity, free ligand, pH, endotoxins, sterility, heavy metals, aluminium, residual solvents (ethanol, acetonitrile). Does not use machine learning — rule-based logic only. Gallium68PSMAQualityChecker.exe → demo mode (console output)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, SpecificActivityGBqPerUmol, RadiochemicalPurityPercent, Germanium68ImpurityPercent, FreeLigandPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, AluminiumPPM
Related utilities
API / calculation and rule-based 4
Indium111 Pentetreotide Quality Checker API / calculation and rule-basedIn-111
What it does
Utility checks critical parameters of the somatostatin analog radiopharmaceutical: Radiochemical purity (≥90%) Free Indium-111 impurity (≤5%) Colloidal Indium-111 impurity (≤5%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: renal and urinary, hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeIndium111Percent, ColloidalIndium111Percent, SpecificActivityMBqPerUg, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, PeptideConcentrationUgPerVial
Related utilities
API / calculation and rule-based 4
Nitrogen13 Ammonia Quality Checker API / calculation and rule-basedF-18N-13
What it does
Utility checks critical parameters of [13N]Ammonia: Radionuclidic purity (≥99.5%) Fluorine-18 impurity (≤0.1%) Radiochemical purity (≥95%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: cardiovascular, blood, cells and marrow, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Fluorine18ImpurityPercent, RadiochemicalPurityPercent, NitrateNitritePercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM
Related utilities
API / calculation and rule-based 4
Oxygen15 Water Quality Checker API / calculation and rule-basedF-18N-13O-15
What it does
Utility checks critical parameters of [15O]Water: Radionuclidic purity (≥99.5%) Nitrogen-13 impurity (≤1.0%) Fluorine-18 impurity (≤0.1%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: cardiovascular, brain and CNS, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Nitrogen13ImpurityPercent, Fluorine18ImpurityPercent, RadiochemicalPurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM
Related utilities
API / calculation and rule-based 4
Scandium43 Quality Checker API / calculation and rule-basedGa-68
What it does
Utility checks critical parameters of Scandium-43: Radionuclidic purity (≥99.0%) Scandium-44 impurity (≤1.0%) Scandium-46 impurity (≤0.1%)
Why it is needed
Supports PET/SPECT oncology diagnostics and receptor imaging through identity, purity, stability, uptake and result-comparability checks.
Where and when to use it
during PET/SPECT diagnostic tracer release, after synthesis, before release and when comparing tracer-specific risks. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Scandium44ImpurityPercent, Scandium46ImpurityPercent, RadiochemicalPurityPercent, FreeScandiumPercent, pH, EndotoxinsEU, SterilityTest
Related utilities
API / calculation and rule-based 4
radionuclide therapy and theranostics 67
Lu-177, Ac-225, Ra-223, Y-90, Ho-166, Sm-153, Sr-89, Re-188, Tb-161, I-131 and other therapeutic radiopharmaceuticals: activity, purity, free metal, daughters and toxicological constraints.
API / calculation and rule-based 67
Ac-225 Targeted Alpha Therapy QC API / calculation and rule-basedAc-225
What it does
Utility checks critical parameters of Ac-225 radioligands: Radiochemical purity (≥95%) Free Ac-225 (≤2%) Daughter nuclides (<1%) — recoil effect control!
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, pulmonary and ventilation, hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeAc225Percent, DaughterNuclidesPercent, SpecificActivityGBq_per_mg, pH, EndotoxinsEU_per_mL, SterilityTest, ActivityMBq, RadionuclidicPurityPercent
Related utilities
API / calculation and rule-based 4
Ac225 Daughter Recoil Analyzer API / calculation and rule-basedAc-225Bi-213
What it does
Utility evaluates alpha-emitting product stability: Free Bi-213 percentage (≤2%) Fr-221/Ac-225 equilibrium Recoil energy (theoretical estimate)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
BatchNumber, ProductName, Activity_Ac225, Activity_Fr221, Activity_Bi213, Time_Hours, Max_Allowed_Free_Bi213_Percent
Related utilities
API / calculation and rule-based 4
Actinium225 Quality Checker API / calculation and rule-basedAc-225Bi-213
What it does
Utility checks critical parameters of actinium-225: Specific activity (≥500 MBq/μmol for conjugates) Radiochemical purity (≥95%) Free actinium (≤5% for conjugates)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, dosimetry and therapy planning.
Input fields
BatchNumber, SpecificActivityMBqPerUmol, RadiochemicalPurityPercent, FreeActiniumPercent, Francium221ImpurityPercent, Astatine217ImpurityPercent, Bismuth213ImpurityPercent, Thallium209ImpurityPercent, pH, EndotoxinsEU
Related utilities
API / calculation and rule-based 4
Actinium225 Radioligand Checker API / calculation and rule-basedAc-225
What it does
Utility performs deterministic QC review for radioligand / theranostics products: Source priority: Ph. Eur. → British Pharmacopoeia / UK implementation → EAEU → EMA/ICH/EU guidance → USP fallback Strict API defaults when exact monograph is not yet encoded: Assay 98–102%, Total impurities ≤1.0%, Individual impurity ≤0.5%
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: product release QC.
Input fields
BatchNumber, ProductName, SubstanceName, ProductClass, Assay_Percent, TotalImpurities_Percent, IndividualImpurityMax_Percent, Aggregates_Percent, Sterility_Result, Endotoxin_Value
Related utilities
API / calculation and rule-based 4
Astatine-211 Quality Checker API / calculation and rule-basedAt-211
What it does
Utility checks critical parameters of astatine-211: Radionuclidic purity (≥99.9%) Astatine-210 impurity (≤0.001%) — CRITICAL! Radiochemical purity (≥95%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, ActivityMBq, RadionuclidicPurityPercent, At210ImpurityPercent, RadiochemicalPurityPercent, FreeAstatinePercent, pH, EndotoxinsEU, SterilityTest, ProductType
Related utilities
API / calculation and rule-based 4
Bismuth-213 Quality Checker API / calculation and rule-basedBi-213
What it does
Utility checks critical parameters of bismuth-213: Radionuclidic purity (≥99.9%) Actinium-225 breakthrough (≤0.01%) — CRITICAL! (Generator leakage) Radiochemical purity (≥95%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, ActivityMBq, RadionuclidicPurityPercent, Ac225BreakthroughPercent, RadiochemicalPurityPercent, FreeBismuthPercent, pH, EndotoxinsEU, SterilityTest, ProductType
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API / calculation and rule-based 4
Copper64 Radioligand Checker API / calculation and rule-basedCu-64
What it does
Utility performs deterministic QC review for radioligand / theranostics products: Source priority: Ph. Eur. → British Pharmacopoeia / UK implementation → EAEU → EMA/ICH/EU guidance → USP fallback Strict API defaults when exact monograph is not yet encoded: Assay 98–102%, Total impurities ≤1.0%, Individual impurity ≤0.5%
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: product release QC.
Input fields
BatchNumber, ProductName, SubstanceName, ProductClass, Assay_Percent, TotalImpurities_Percent, IndividualImpurityMax_Percent, Aggregates_Percent, Sterility_Result, Endotoxin_Value
Related utilities
API / calculation and rule-based 4
Cu-64 ATSM Quality Checker API / calculation and rule-basedCu-64
What it does
Utility checks critical parameters of Cu-64 ATSM: Radiochemical purity (≥95%) Free copper (≤5%) Specific activity (≥10 GBq/umol)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, hepatobiliary and GI, brain and CNS, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeCopperPercent, SpecificActivityGBq_per_umol, pH, ResidualSolventsPPM, EndotoxinsEU_per_mL, SterilityTest, ActivityMBq, RadionuclidicPurityPercent
Related utilities
API / calculation and rule-based 4
Cu64 F18 Chelator Stability Monitor API / calculation and rule-basedCu-64F-18
What it does
Utility evaluates radiopharmaceutical resistance to decay/dissociation: Intact complex % (≥95%) Free isotope % (≤2%) Colloidal form % (≤1%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, hepatobiliary and GI, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, stability, storage, decay and waste.
Input fields
BatchNumber, ProductName, Isotope, Intact_Complex_Percent, Free_Metal_Percent, Colloidal_Form_Percent, Challenge_Type, Incubation_Time_Hours, Temperature_C, Min_Intact_Percent
Related utilities
API / calculation and rule-based 4
F-18 PSMA PET Synthesis Quality Checker API / calculation and rule-basedF-18
What it does
Utility checks critical parameters of F-18 PSMA radioligands: Radiochemical purity (≥95%) Free fluoride (≤5%) Precursor residue (<0.1%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeFluoridePercent, PrecursorPercent, SpecificActivityGBq_per_umol, pH, ResidualSolventsPPM, EndotoxinsEU_per_mL, SterilityTest, ActivityMBq
Related utilities
API / calculation and rule-based 4
Fluorine18 Radioligand Checker API / calculation and rule-basedF-18
What it does
Utility performs deterministic QC review for radioligand / theranostics products: Source priority: Ph. Eur. → British Pharmacopoeia / UK implementation → EAEU → EMA/ICH/EU guidance → USP fallback Strict API defaults when exact monograph is not yet encoded: Assay 98–102%, Total impurities ≤1.0%, Individual impurity ≤0.5%
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: product release QC.
Input fields
BatchNumber, ProductName, SubstanceName, ProductClass, Assay_Percent, TotalImpurities_Percent, IndividualImpurityMax_Percent, Aggregates_Percent, Sterility_Result, Endotoxin_Value
Related utilities
API / calculation and rule-based 4
Ga-68 DOTATATE Generator Based QC API / calculation and rule-basedGa-68Ge-68
What it does
Utility checks critical parameters of Ga-68 DOTATATE: Radiochemical purity (≥95%) Free and colloidal Ga-68 (≤5% and <2%) Ge-68 breakthrough (<0.001%) — CRITICAL!
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeGalliumPercent, ColloidalGalliumPercent, SpecificActivityGBq_per_mg, pH, ResidualSolventsPPM, EndotoxinsEU_per_mL, SterilityTest, ActivityMBq
Related utilities
API / calculation and rule-based 4
Ho-166 Microsphere Quality Checker API / calculation and rule-basedHo-166
What it does
Utility checks critical parameters of Ho-166 microspheres: Radiochemical purity (≥98%) Free holmium (≤2%) Particle size (20-50 μm) and D90 (<60 μm)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: pulmonary and ventilation, hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, dosimetry and therapy planning.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeHolmiumPercent, ParticleSizeMeanUm, ParticleSizeD90Um, SpecificActivityMBq_per_mg, pH, EndotoxinsEU_per_mL, SterilityTest, ActivityGBq
Related utilities
Holmium-166 Quality Checker API / calculation and rule-basedHo-166
What it does
The utility checks particle size, RCP, free ions, sterility, endotoxins. Does not use machine learning — rule-based logic only. Holmium166QualityChecker.exe → demo mode Holmium166QualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: pulmonary and ventilation, hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, Formulation_Type, Radionuclidic_Purity_Percent, Radiochemical_Purity_Percent, Specific_Activity_MBq_mg, Particle_Size_Mean_um, Particle_Size_Min_um, Particle_Size_Max_um, Particles_Out_of_Range_Percent, Free_Holmium_Ion_Percent
Related utilities
I-131 Sodium Iodide Therapy QC API / calculation and rule-basedI-131
What it does
Utility checks critical parameters of I-131 NaI: Radiochemical purity (≥95%) Free iodine (≤5%) Volatile iodine forms (<1%) — RADIATION SAFETY!
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, stability, storage, decay and waste.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeIodinePercent, pH, SpecificActivityMBq_per_mg, EndotoxinsEU_per_mL, SterilityTest, ActivityGBq, RadionuclidicPurityPercent, Te131ImpurityPercent
Related utilities
I131 Iobenguane Commercial Radioligand Product Map API / calculation and rule-basedI-131
What it does
Utility checks critical parameters of I-131 MIBG radiopharmaceutical: Total Activity: Within specification Radiochemical Purity: ≥95.0% Free Iodide-131: ≤5.0%
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
BatchNumber, TotalActivityMBq, RCP, FreeIodide, ChemPurity, pH, Endotoxins, Sterility, SpecificActivity
Related utilities
API / calculation and rule-based 4
I131 Volatility Extended Checker API / calculation and rule-basedI-131
What it does
Utility performs DEEP analysis of volatile iodine with: Current value check (≤5.0%) Stability prediction until end of shelf life (60 days) Trend analysis with previous measurements
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: product release QC, stability, storage, decay and waste.
Input fields
BatchNumber, VolatileIodinePercent_Current, MeasurementDateTime, ProductionDateTime, StorageTemperatureC, PreviousVolatileIodinePercent, PreviousMeasurementDateTime, HumidityPercent
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In-111 Octreotide Quality Checker API / calculation and rule-basedIn-111
What it does
Utility checks critical parameters of In-111 Octreotide: Radiochemical purity (≥95%) Free and colloidal In-111 (≤5% and <2%) Specific activity (≥20 MBq/mg)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeIndiumPercent, ColloidalIndiumPercent, SpecificActivityMBq_per_mg, pH, ResidualSolventsPPM, EndotoxinsEU_per_mL, SterilityTest, ActivityMBq
Related utilities
Iodine131 Capsules Quality Checker API / calculation and rule-basedI-131
What it does
The utility checks activity (% of declared), radiochemical purity, volatile iodine, disintegration, microbiology, heavy metals, residual solvents. Does not use machine learning — rule-based logic only. Iodine131CapsulesQualityChecker.exe → demo mode (console output) Iodine131CapsulesQualityChecker.exe input.csv output.json → evaluate your data
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
BatchNumber, MeasuredActivityMBq, DeclaredActivityMBq, RadiochemicalPurity, VolatileIodine, DisintegrationTime, HeavyMetals, TAMC, TYMC, EColiDetected
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Iodine131 Hippuran Quality Checker API / calculation and rule-basedI-131
What it does
The source description did not contain a separate English section. The utility uses deterministic rule-based checks for Iodine-131 Hippuran using input.csv fields and generates output.json for QA/QC review. BatchNumber,RadiochemicalPurityPercent,FreeIodine131Percent,BenzoicAcidImpurityPercent,SpecificActivityMBqPerMg,pH,EndotoxinsEU,SterilityTest,TotalActivityMBq,AppearanceScore
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeIodine131Percent, BenzoicAcidImpurityPercent, SpecificActivityMBqPerMg, pH, EndotoxinsEU, SterilityTest, TotalActivityMBq, AppearanceScore
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Iodine131 Lipiodol Quality Checker API / calculation and rule-basedI-131
What it does
Utility checks critical parameters of Iodine-131 Lipiodol: Radionuclidic purity (≥99.9%) Iodine-125 impurity (≤0.1%) Radiochemical purity (≥95%) — binding to lipiodol
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Iodine125ImpurityPercent, RadiochemicalPurityPercent, FreeIodidePercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM
Related utilities
Iodine131 MIBG Quality Checker API / calculation and rule-basedI-131
What it does
Utility checks critical parameters of Iodine-131 MIBG: Radionuclidic purity (≥99.9%) Iodine-125 impurity (≤0.1%) Radiochemical purity (≥95%) — binding to MIBG
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Iodine125ImpurityPercent, RadiochemicalPurityPercent, FreeIodidePercent, PrecursorMIBGPercent, pH, EndotoxinsEU, SterilityTest
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Lead212 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
Utility checks critical parameters of lead-212: Specific activity (≥100 MBq/μmol for conjugates) Radiochemical purity (≥95%) Daughter nuclides: bismuth-212 (≤5%), thallium-208 (≤1%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, dosimetry and therapy planning.
Input fields
BatchNumber, SpecificActivityMBqPerUmol, RadiochemicalPurityPercent, Bismuth212ImpurityPercent, Thallium208ImpurityPercent, FreeLeadPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM
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API / calculation and rule-based 4
Lu-177 DOTATATE Therapy Quality Checker API / calculation and rule-basedLu-177
What it does
Utility checks critical parameters of Lu-177 DOTATATE: Radiochemical purity (≥95%) Free lutetium (≤2%) Precursor residue (<0.1%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeLutetiumPercent, PrecursorPercent, SpecificActivityGBq_per_mg, pH, ResidualSolventsPPM, EndotoxinsEU_per_mL, SterilityTest, ActivityGBq
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Lu-177 PSMA Therapy Quality Checker API / calculation and rule-basedLu-177
What it does
Utility checks critical parameters of Lu-177 PSMA: Radiochemical purity (≥95%) Free lutetium (≤2%) Precursor residue (<0.1%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeLutetiumPercent, PrecursorPercent, SpecificActivityGBq_per_mg, pH, ResidualSolventsPPM, EndotoxinsEU_per_mL, SterilityTest, ActivityGBq
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Lu177 Dotatate Variants Commercial Radioligand Product Map API / calculation and rule-basedLu-177
What it does
Utility checks critical parameters of lutetium-177 dotatate: Radiochemical purity (≥95%) Free Lu-177 (≤2%) Colloidal Lu-177 (≤1%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, CommercialProduct, RadiochemicalPurityPercent, FreeLu177Percent, ColloidalLu177Percent, SpecificActivityGBqPerUmol, pH, EndotoxinsEUPerVial, SterilityTest, RadionuclidicPurityPercent
Related utilities
API / calculation and rule-based 4
Lu177 Oxidation Checker API / calculation and rule-basedLu-177
What it does
Utility performs DEEP analysis of lutetium-177 oxidation with: Current Lu-177m impurity check (≤0.1%) Stability prediction until end of shelf life (7 days) Trend analysis with previous measurements
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
BatchNumber, Lu177mImpurityPercent_Current, MeasurementDateTime, ProductionDateTime, ProductType, StorageTemperatureC, ProtectedFromLight, PreviousLu177mImpurityPercent, PreviousMeasurementDateTime
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Lu177 Vipivotide Tetraxetan Commercial Radioligand Product Map API / calculation and rule-basedLu-177
What it does
Utility checks critical parameters of lutetium-177 vipivotide tetraxetan: Radiochemical purity (≥95%) Free Lu-177 (≤2%) Colloidal Lu-177 (≤1%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, CommercialProduct, RadiochemicalPurityPercent, FreeLu177Percent, ColloidalLu177Percent, SpecificActivityGBqPerUmol, pH, EndotoxinsEUPerVial, SterilityTest, RadionuclidicPurityPercent
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Lutetium177 DOTATATE Quality Checker API / calculation and rule-basedLu-177
What it does
The utility checks specific activity, radiochemical purity, impurities (177ᵐLu, free peptide), endotoxins, sterility, pH, heavy metals, residual solvents. Does not use machine learning — rule-based logic only. Lutetium177DOTATATEQualityChecker.exe → demo mode (console output)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, stability, storage, decay and waste.
Input fields
BatchNumber, SpecificActivityGBqPerUmol, RadiochemicalPurityPercent, Impurity177mLuPercent, FreePeptidePercent, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, pH, EthanolPPM
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Lutetium177 DOTATOC Quality Checker API / calculation and rule-basedLu-177
What it does
Utility checks critical parameters of Lutetium-177 DOTATOC: Radionuclidic purity (≥99.9%) Lutetium-177m impurity (≤0.01%) Radiochemical purity (≥95%) — binding to DOTATOC
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Lutetium177mImpurityPercent, RadiochemicalPurityPercent, FreeLutetiumPercent, PrecursorPeptidePercent, pH, EndotoxinsEU, SterilityTest
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Lutetium177 J591 Quality Checker API / calculation and rule-basedLu-177
What it does
Utility checks critical parameters of Lutetium-177 J591: Radionuclidic purity (≥99.9%) Lutetium-177m impurity (≤0.01%) Radiochemical purity (≥95%) — binding to J591 monoclonal antibody
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Lutetium177mImpurityPercent, RadiochemicalPurityPercent, FreeLutetiumPercent, AggregateContentPercent, ProteinConcentrationMgPerMl, pH, EndotoxinsEU
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Lutetium177 PSMA Quality Checker API / calculation and rule-basedLu-177
What it does
The utility checks specific activity, radiochemical purity, free ligand, endotoxins, sterility, pH, heavy metals, residual solvents. Does not use machine learning — rule-based logic only. Lutetium177PSMAQualityChecker.exe → demo mode (console output) Lutetium177PSMAQualityChecker.exe input.csv output.json → evaluate your data
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, hepatobiliary and GI, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, stability, storage, decay and waste.
Input fields
BatchNumber, SpecificActivityGBqPerUmol, RadiochemicalPurityPercent, FreeLigandPercent, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, pH, EthanolPPM, AcetonePPM
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PSMA SSTR Radioligand Map Utility API / calculation and rule-basedGeneral RPH
What it does
Utility creates comprehensive quality map for targeted products: Structural integrity (urea bond/oxidation) Binding affinity (Kd, IC50) Free ligand and hydrolysis impurities
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, stability, storage, decay and waste.
Input fields
BatchNumber, ProductName, TargetType, Urea_Linkage_Intact_Percent, Peptide_Oxidation_Percent, Kd_nM, Bmax_fmol_mg, IC50_nM, Free_Ligand_Percent, Hydrolysis_Product_Percent
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API / calculation and rule-based 4
PSMARadioligand Release Checker API / calculation and rule-basedGeneral RPH
What it does
Utility performs deterministic QC review for radioligand / theranostics products: Source priority: Ph. Eur. → British Pharmacopoeia / UK implementation → EAEU → EMA/ICH/EU guidance → USP fallback Strict API defaults when exact monograph is not yet encoded: Assay 98–102%, Total impurities ≤1.0%, Individual impurity ≤0.5%
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: product release QC.
Input fields
BatchNumber, ProductName, SubstanceName, ProductClass, Assay_Percent, TotalImpurities_Percent, IndividualImpurityMax_Percent, Aggregates_Percent, Sterility_Result, Endotoxin_Value
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API / calculation and rule-based 4
Ra-223 Dichloride Injection QC API / calculation and rule-basedRa-223
What it does
Utility checks critical parameters of Ra-223 Dichloride: Radionuclidic purity (≥99.9%) Ac-227 impurity (<0.001%) — CRITICAL! Ra-224 impurity (<0.01%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: pulmonary and ventilation, hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadionuclidicPurityPercent, Ac227ImpurityPercent, Ra224ImpurityPercent, RadiochemicalPurityPercent, pH, Osmolality_mOsm_per_kg, EndotoxinsEU_per_mL, SterilityTest, ActivitykBq_per_mL
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Radiochemical Purity Profile Checker API / calculation and rule-basedGeneral RPH
What it does
Utility performs deterministic QC review for radioligand / theranostics products: Source priority: Ph. Eur. → British Pharmacopoeia / UK implementation → EAEU → EMA/ICH/EU guidance → USP fallback Strict API defaults when exact monograph is not yet encoded: Assay 98–102%, Total impurities ≤1.0%, Individual impurity ≤0.5%
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: product release QC.
Input fields
BatchNumber, ProductName, SubstanceName, ProductClass, Assay_Percent, TotalImpurities_Percent, IndividualImpurityMax_Percent, Aggregates_Percent, Sterility_Result, Endotoxin_Value
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API / calculation and rule-based 4
Radioligand Molar Activity Checker API / calculation and rule-basedGeneral RPH
What it does
Utility performs deterministic QC review for radioligand / theranostics products: Source priority: Ph. Eur. → British Pharmacopoeia / UK implementation → EAEU → EMA/ICH/EU guidance → USP fallback Strict API defaults when exact monograph is not yet encoded: Assay 98–102%, Total impurities ≤1.0%, Individual impurity ≤0.5%
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: product release QC.
Input fields
BatchNumber, ProductName, SubstanceName, ProductClass, Assay_Percent, TotalImpurities_Percent, IndividualImpurityMax_Percent, Aggregates_Percent, Sterility_Result, Endotoxin_Value
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API / calculation and rule-based 4
Radioligand Stability Trend Checker API / calculation and rule-basedGeneral RPH
What it does
Utility performs deterministic QC review for radioligand / theranostics products: Source priority: Ph. Eur. → British Pharmacopoeia / UK implementation → EAEU → EMA/ICH/EU guidance → USP fallback Strict API defaults when exact monograph is not yet encoded: Assay 98–102%, Total impurities ≤1.0%, Individual impurity ≤0.5%
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: product release QC, stability, storage, decay and waste.
Input fields
BatchNumber, ProductName, SubstanceName, ProductClass, Assay_Percent, TotalImpurities_Percent, IndividualImpurityMax_Percent, Aggregates_Percent, Sterility_Result, Endotoxin_Value
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API / calculation and rule-based 4
Radiolysis Stability Checker API / calculation and rule-basedGeneral RPH
What it does
Predicts RCP drop due to autoradiolysis based on activity, volume, and time. Accounts for radioprotectors (ascorbate, ethanol). RadiolysisStabilityChecker.exe → demo mode RadiolysisStabilityChecker.exe input.csv output.json → calculation
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, stability, storage, decay and waste.
Input fields
BatchNumber, Radiopharmaceutical, Initial_Activity_MBq, Volume_mL, Initial_RCP_Percent, Has_Radioprotector, Radioprotector_Type, Radioprotector_Concentration_mM, EOS_Time_ISO, Check_Time_ISO
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API / calculation and rule-based 4
Radionuclidic Purity Checker API / calculation and rule-basedGeneral RPH
What it does
Utility performs deterministic QC review for radioligand / theranostics products: Source priority: Ph. Eur. → British Pharmacopoeia / UK implementation → EAEU → EMA/ICH/EU guidance → USP fallback Strict API defaults when exact monograph is not yet encoded: Assay 98–102%, Total impurities ≤1.0%, Individual impurity ≤0.5%
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: product release QC, generators and isotope purity.
Input fields
BatchNumber, ProductName, SubstanceName, ProductClass, Assay_Percent, TotalImpurities_Percent, IndividualImpurityMax_Percent, Aggregates_Percent, Sterility_Result, Endotoxin_Value
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API / calculation and rule-based 4
Radium223 Dichloride Quality Checker API / calculation and rule-basedRa-223
What it does
The utility checks activity, radiochemical purity, radon-222 impurity, pH, chlorides, endotoxins, sterility, heavy metals, residual solvents. Does not use machine learning — rule-based logic only. Radium223DichlorideQualityChecker.exe → demo mode (console output) Radium223DichlorideQualityChecker.exe input.csv output.json → evaluate your data
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
BatchNumber, ActivityMBqPerMl, RadiochemicalPurityPercent, Radon222ImpurityBqPerMl, pH, ChloridesMgPerMl, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, EthanolPPM
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API / calculation and rule-based 4
Rapid Release Sterility Endotoxin Checker API / calculation and rule-basedGeneral RPH
What it does
Utility performs deterministic QC review for radioligand / theranostics products: Source priority: Ph. Eur. → British Pharmacopoeia / UK implementation → EAEU → EMA/ICH/EU guidance → USP fallback Strict API defaults when exact monograph is not yet encoded: Assay 98–102%, Total impurities ≤1.0%, Individual impurity ≤0.5%
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: product release QC.
Input fields
BatchNumber, ProductName, SubstanceName, ProductClass, Assay_Percent, TotalImpurities_Percent, IndividualImpurityMax_Percent, Aggregates_Percent, Sterility_Result, Endotoxin_Value
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API / calculation and rule-based 4
Re-188 Liposome Quality Checker API / calculation and rule-basedRe-188
What it does
Utility checks critical parameters of Re-188 Liposomes: Radiochemical purity (≥95%) Encapsulation efficiency (≥90%) Particle size (100-200 nm) and PDI (<0.2)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeRheniumPercent, EncapsulationEfficiencyPercent, ParticleSizeMeanNm, PolydispersityIndex, pH, Osmolality_mOsm_per_kg, EndotoxinsEU_per_mL, SterilityTest
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API / calculation and rule-based 4
Rhenium-188 Quality Checker API / calculation and rule-basedRe-188
What it does
The utility checks W-188 breakthrough, RCP, free perrhenate, sterility. Does not use machine learning — rule-based logic only. Rhenium188QualityChecker.exe → demo mode Rhenium188QualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity.
Input fields
BatchNumber, Formulation_Type, Radionuclidic_Purity_Percent, Tungsten_188_Breakthrough_ppm, Radiochemical_Purity_Percent, Free_Perrhenate_Percent, Hydrolyzed_Reduced_Re_Percent, Specific_Activity_MBq_mg, pH_Value, Ethanol_Content_Percent
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Samarium153 EDTMP Quality Checker API / calculation and rule-basedSm-153Tc-99m
What it does
Utility checks critical parameters of Samarium-153 EDTMP: Radionuclidic purity (≥99.9%) Europium-154/155 impurities (≤0.1%) — LONG-LIVED! Radiochemical purity (≥95%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Europium154ImpurityPercent, Europium155ImpurityPercent, RadiochemicalPurityPercent, FreeSamariumPercent, pH, EndotoxinsEU, SterilityTest
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API / calculation and rule-based 4
Sm-153 EDTMP Bone Pain QC API / calculation and rule-basedSm-153
What it does
Utility checks critical parameters of Sm-153 EDTMP: Radiochemical purity (≥95%) Free samarium (≤5%) Eu-154 impurity (<0.001%) — CRITICAL!
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeSamariumPercent, pH, SpecificActivityMBq_per_mg, EndotoxinsEU_per_mL, SterilityTest, ActivityMBq, RadionuclidicPurityPercent, Eu154ImpurityPercent
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API / calculation and rule-based 4
Specific Activity Calculator API / calculation and rule-basedAc-225Cu-64Ga-68Lu-177Y-90
What it does
Calculates specific activity (MBq/nmol) with decay correction. Supports F-18, Ga-68, Lu-177, Ac-225, Y-90, Cu-64, etc. SpecificActivityCalculator.exe → demo mode SpecificActivityCalculator.exe input.csv output.json → calculation
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, Radionuclide, Measured_Activity_MBq, Measurement_Time_ISO, Mass_Ligand_ug, Molecular_Weight_g_mol, Reference_Time_ISO, Min_Specific_Activity_MBq_nmol
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API / calculation and rule-based 4
Sr-89 Chloride Palliation QC API / calculation and rule-basedSr-89
What it does
Utility checks critical parameters of Sr-89 Chloride: Radionuclidic purity (≥99.9%) Sr-85 impurity (<0.01%) Chemical purity and aluminum content
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadionuclidicPurityPercent, Sr85ImpurityPercent, OtherRadionuclidesPercent, pH, Osmolality_mOsm_per_kg, EndotoxinsEU_per_mL, SterilityTest, ActivityMBq, ChemicalPurityPercent
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API / calculation and rule-based 4
SSTRRadioligand Release Checker API / calculation and rule-basedGeneral RPH
What it does
Utility performs deterministic QC review for radioligand / theranostics products: Source priority: Ph. Eur. → British Pharmacopoeia / UK implementation → EAEU → EMA/ICH/EU guidance → USP fallback Strict API defaults when exact monograph is not yet encoded: Assay 98–102%, Total impurities ≤1.0%, Individual impurity ≤0.5%
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: product release QC.
Input fields
BatchNumber, ProductName, SubstanceName, ProductClass, Assay_Percent, TotalImpurities_Percent, IndividualImpurityMax_Percent, Aggregates_Percent, Sterility_Result, Endotoxin_Value
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API / calculation and rule-based 4
Strontium89 Chloride Quality Checker API / calculation and rule-basedSr-89
What it does
The utility checks activity, radiochemical purity, strontium-85 impurity, pH, chlorides, endotoxins, sterility, heavy metals, residual solvents. Does not use machine learning — rule-based logic only. Strontium89ChlorideQualityChecker.exe → demo mode (console output) Strontium89ChlorideQualityChecker.exe input.csv output.json → evaluate your data
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, stability, storage, decay and waste.
Input fields
BatchNumber, ActivityMBqPerMl, RadiochemicalPurityPercent, Strontium85ImpurityPercent, pH, ChloridesMgPerMl, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, EthanolPPM
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Tb-161 Radioligand Quality Checker API / calculation and rule-basedTb-161
What it does
Utility checks critical parameters of Tb-161 Radioligand: Radiochemical purity (≥95%) Free terbium (≤2%) Tb-160 impurity (<0.01%) — CRITICAL!
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeTerbiumPercent, PrecursorPercent, SpecificActivityGBq_per_mg, pH, ResidualSolventsPPM, EndotoxinsEU_per_mL, SterilityTest, ActivityMBq
Related utilities
API / calculation and rule-based 4
Tb161 Radionuclidic Purity Checker API / calculation and rule-basedTb-161
What it does
Utility analyzes gamma spectra for impurities: Tb-161 purity (≥99.9%) Tb-160 impurity (≤0.1%) Target (Gd-153) and activation (Eu-152) impurities
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, ProductName, Activity_Tb161, Activity_Tb160, Activity_Gd153, Activity_Eu152, Max_Tb160_Percent, Max_Other_Impurities_Percent
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Tc-99m HMPAO Brain Perfusion Stability Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical stability parameters of Tc-99m HMPAO: Lipophilic complex fraction (≥80%) Time since preparation (<30 min) Secondary hydrophilic complex (<20%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
BatchNumber, RadiochemicalPurityPercent, SecondaryComplexPercent, FreeTechnetiumPercent, TimeSincePreparationMin, MaxAllowedTimeMin, pH, ActivityMBq, StorageCondition
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Terbium-149 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
The utility checks RCP, long-lived impurities (Tb-155/156), free terbium, specific activity. Does not use machine learning — rule-based logic only. Terbium149QualityChecker.exe → demo mode Terbium149QualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, Radiopharmaceutical, Radionuclidic_Purity_Percent, Radiochemical_Purity_Percent, Specific_Activity_MBq_nmol, Long_Lived_Tb_Impurities_Percent, Free_Terbium_Ion_Percent, Target_Material_Residue_ppm, pH_Value, Ethanol_Content_Percent
Related utilities
API / calculation and rule-based 4
Terbium-155 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
The utility checks RCP, other Tb isotopes, free terbium, specific activity. Does not use machine learning — rule-based logic only. Terbium155QualityChecker.exe → demo mode Terbium155QualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity.
Input fields
BatchNumber, Radiopharmaceutical, Radionuclidic_Purity_Percent, Radiochemical_Purity_Percent, Specific_Activity_MBq_nmol, Other_Tb_Isotopes_Percent, Free_Terbium_Ion_Percent, Target_Material_Residue_ppm, pH_Value, Ethanol_Content_Percent
Related utilities
API / calculation and rule-based 4
Terbium-161 Quality Checker API / calculation and rule-basedTb-161
What it does
Utility checks critical parameters of terbium-161: Radionuclidic purity (≥99.9%) Terbium-160 impurity (≤0.1%) — CRITICAL! Radiochemical purity (≥95%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, ActivityMBq, RadionuclidicPurityPercent, Tb160ImpurityPercent, RadiochemicalPurityPercent, GadoliniumContentPPM, pH, EndotoxinsEU, SterilityTest, ProductType
Related utilities
Terbium161 Radioligand Checker API / calculation and rule-basedTb-161
What it does
Utility performs deterministic QC review for radioligand / theranostics products: Source priority: Ph. Eur. → British Pharmacopoeia / UK implementation → EAEU → EMA/ICH/EU guidance → USP fallback Strict API defaults when exact monograph is not yet encoded: Assay 98–102%, Total impurities ≤1.0%, Individual impurity ≤0.5%
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: oncology and theranostics. Workflow stages: product release QC.
Input fields
BatchNumber, ProductName, SubstanceName, ProductClass, Assay_Percent, TotalImpurities_Percent, IndividualImpurityMax_Percent, Aggregates_Percent, Sterility_Result, Endotoxin_Value
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API / calculation and rule-based 4
Theranostic Paired Dose Calculator API / calculation and rule-basedGeneral RPH
What it does
Utility calculates personalized therapeutic dose: Based on diagnostic PET/CT data Considering critical organ dose limits (kidneys) Considering target tumor dose
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: renal and urinary, oncology and theranostics. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
BatchNumber, PatientID, RadioligandPair, Diag_Activity_MBq, Diag_HalfLife_h, Tumor_Uptake_SUV, Kidney_Uptake_SUV, Ther_HalfLife_h, Max_Tolerated_Dose_Gy, Target_Tumor_Dose_Gy
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API / calculation and rule-based 4
Thorium-227 Quality Checker API / calculation and rule-basedTh-227
What it does
The utility checks RCP, free thorium, daughter nuclides, long-lived impurities, sterility. Does not use machine learning — rule-based logic only. Thorium227QualityChecker.exe → demo mode Thorium227QualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, Radiopharmaceutical, Radionuclidic_Purity_Percent, Radiochemical_Purity_Percent, Specific_Activity_MBq_mg_Ab, Long_Lived_Th_Impurities_Percent, Free_Thorium_Ion_Percent, Daughter_Nuclide_Escape_Percent, pH_Value, Protein_Concentration_mg_per_mL
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API / calculation and rule-based 4
Y-90 Microsphere Radioembolization Checker API / calculation and rule-basedY-90
What it does
Utility checks critical parameters of Y-90 microspheres: Particle size (10-60 μm) and D90 (<70 μm) Radiochemical purity (≥99%) Free yttrium (<0.1%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: pulmonary and ventilation, hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, dosimetry and therapy planning.
Input fields
BatchNumber, MicrosphereType, MeanParticleSizeUm, ParticleSizeD90Um, PolydispersityIndex, RadiochemicalPurityPercent, FreeYttriumPercent, ActivityGBq, SpecificActivityGBq_per_g, pH
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API / calculation and rule-based 4
Yttrium86 Quality Checker API / calculation and rule-basedY-86Y-90
What it does
Utility checks critical parameters of Yttrium-86: Radionuclidic purity (≥99.0%) Yttrium-87 impurity (≤1.0%) Yttrium-88 impurity (≤0.01%) — CRITICAL!
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Yttrium87ImpurityPercent, Yttrium88ImpurityPercent, Strontium82ImpurityPercent, RadiochemicalPurityPercent, FreeYttriumPercent, pH, EndotoxinsEU
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Yttrium90 Glass Microsphere Checker API / calculation and rule-basedY-90
What it does
Utility checks critical parameters of Y-90 Glass Microspheres: Particle size (20–30 μm) — strict! Sphericity (≥95%) Activity per sphere (~2500 Bq)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: pulmonary and ventilation, hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, dosimetry and therapy planning.
Input fields
BatchNumber, TotalActivityGBq, ActivityPerSphereBq, MeanDiameterMicrons, DiameterRangeMinMicrons, DiameterRangeMaxMicrons, SphericityPercent, RadionuclidicPurityPercent, Yttrium88ImpurityPercent, FreeYttriumPercent
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API / calculation and rule-based 4
Yttrium90 Quality Checker API / calculation and rule-basedY-90
What it does
Utility checks critical parameters of yttrium-90: Specific activity (≥1000 MBq/μmol for conjugates) Radiochemical purity (≥95%) Yttrium-88 impurity (≤0.001%) — CRITICAL!
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: pulmonary and ventilation, hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, stability, storage, decay and waste.
Input fields
BatchNumber, SpecificActivityMBqPerUmol, RadiochemicalPurityPercent, Yttrium88ImpurityPercent, FreeYttriumPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, ProductType
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Yttrium90 Resin Microsphere Checker API / calculation and rule-basedY-90
What it does
Utility checks critical parameters of Y-90 Resin Microspheres: Particle size (20–60 μm) Number of particles (important for dosimetry) Sphericity (≥90%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: pulmonary and ventilation, hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityGBq, NumberOfParticlesMillions, MeanDiameterMicrons, DiameterRangeMinMicrons, DiameterRangeMaxMicrons, SphericityPercent, RadionuclidicPurityPercent, Yttrium88ImpurityPercent, FreeYttriumPercent
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API / calculation and rule-based 4
Zirconium89 DFO Quality Checker API / calculation and rule-basedY-90Zr-89
What it does
Utility checks critical parameters of Zr-89-DFO: Radionuclidic purity (≥99.0%) Yttrium-88 impurity (≤0.001%) — CRITICAL! Yttrium-87 impurity (≤0.1%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Yttrium88ImpurityPercent, Yttrium87ImpurityPercent, RadiochemicalPurityPercent, FreeZirconiumPercent, pH, EndotoxinsEU, SterilityTest
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API / calculation and rule-based 4
Zirconium89 Trastuzumab Quality Checker API / calculation and rule-basedY-90Zr-89
What it does
Utility checks critical parameters of Zr-89-Trastuzumab: Immunoreactivity (≥80%) — MAIN PARAMETER! Absence of aggregates (≤5%) Radiochemical purity (≥95%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, ProteinConcentrationMgPerMl, SpecificActivityGBqPerUmol, RadionuclidicPurityPercent, Yttrium88ImpurityPercent, RadiochemicalPurityPercent, FreeZirconiumPercent, ImmunoreactivityPercent, AggregatesPercent
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API / calculation and rule-based 4
Zr-89 Monoclonal Antibody Labeling QC API / calculation and rule-basedZr-89
What it does
Utility checks critical parameters of Zr-89 mAbs: Radiochemical purity (≥95%) Free zirconium (≤2%) Immunoreactivity (≥90%)
Why it is needed
Supports theranostics and radionuclide therapy as one chain covering release, daughter products, dosimetry and patient-safety controls.
Where and when to use it
during therapeutic radiopharmaceutical release, dosimetry planning, free-metal assessment, daughter radionuclide control and handling safety review. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, AntibodyName, RadiochemicalPurityPercent, FreeZirconiumPercent, AggregatesPercent, SpecificActivityMBq_per_mg, ImmunoreactivityPercent, pH, EndotoxinsEU_per_mL, SterilityTest
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API / calculation and rule-based 4
generators, isotope purity and starting radionuclides 39
Control of generator eluate, breakthrough, radionuclidic purity, isotope mix, carrier/free radionuclides and starting radionuclides before labeling.
API / calculation and rule-based 39
Cobalt57 Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of cobalt-57: Radionuclidic purity (≥99.9%) Cobalt-56 impurity (≤0.05%) — long-lived impurity (T½=77 days) Cobalt-58 impurity (≤0.05%) — (T½=71 days)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Workflow stages: product release QC, generators and isotope purity, stability, storage, decay and waste.
Input fields
BatchNumber, RadionuclidicPurityPercent, Co56ImpurityPercent, Co58ImpurityPercent, ChemicalPurityPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, ProductType
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API / calculation and rule-based 4
Cobalt58 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
Limited source description was provided. The utility shall read input.csv, validate declared fields, apply deterministic acceptance rules defined in the executable and produce output.json for QA/QC review.
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Workflow stages: product release QC, generators and isotope purity.
Input fields
id, val
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API / calculation and rule-based 4
Copper67 Quality Checker API / calculation and rule-basedCu-67
What it does
Utility checks critical parameters of copper-67: Specific activity (≥100 MBq/μmol for conjugates) Radiochemical purity (≥95%) Copper-64 impurity (≤0.1%) — CRITICAL!
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: renal and urinary, hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, SpecificActivityMBqPerUmol, RadiochemicalPurityPercent, Copper64ImpurityPercent, FreeCopperPercent, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, ProductType
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API / calculation and rule-based 4
Daughter Nuclide Ingrowth Calculator API / calculation and rule-basedGa-68Ge-68Rb-82Sr-82Tc-99m
What it does
Utility calculates theoretical activity of daughter isotopes in radiopharmaceutical generators: Supported pairs: Mo-99/Tc-99m, Sr-82/Rb-82, Ge-68/Ga-68, Ti-44/Sc-44, Zn-62/Cu-62 Calculation using Bateman equations Determination of radioactive equilibrium type
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: hepatobiliary and GI. Workflow stages: product release QC, generators and isotope purity, stability, storage, decay and waste.
Input fields
BatchNumber, ParentIsotope, InitialParentActivityMBq, ElapsedTimeHours, DaughterHalfLifeHours, ParentHalfLifeHours
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API / calculation and rule-based 4
Decay Corrector API / calculation and rule-basedGeneral RPH
What it does
The utility calculates decay-corrected radionuclide activity from calibration time to measurement or administration time. Does not use machine learning — physics-based formulas and rules only. DecayCorrector.exe → demo mode (console output) DecayCorrector.exe input.csv output.json → calculation on your data
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Workflow stages: product release QC, generators and isotope purity, stability, storage, decay and waste.
Input fields
BatchNumber, Radionuclide, MeasuredActivityMBq, CalibrationTime, MeasurementTime
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API / calculation and rule-based 4
Dosimetry Pre-Calculator API / calculation and rule-basedAc-225Cu-64Ga-68I-131Lu-177Tc-99mZr-89
What it does
Calculates activity at injection time, effective dose, and critical organ load. Supports F-18, Ga-68, Tc-99m, Lu-177, Ac-225, Cu-64, I-131, Zr-89. DosimetryPreCalculator.exe → demo mode DosimetryPreCalculator.exe input.csv output.json → calculation
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: renal and urinary, bone and musculoskeletal. Workflow stages: product release QC, generators and isotope purity, dosimetry and therapy planning.
Input fields
PatientID, Radiopharmaceutical, Radionuclide, Reference_Activity_MBq, Calibration_Time_ISO, Injection_Time_ISO, Patient_Weight_kg, Patient_Age_years, Min_Dose_MBq, Max_Dose_MBq
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API / calculation and rule-based 4
Erbium-169 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
The utility checks particle size, RCP, free ions, sterility, endotoxins. Does not use machine learning — rule-based logic only. Erbium169QualityChecker.exe → demo mode Erbium169QualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: hepatobiliary and GI, bone and musculoskeletal, lymphatic, infection and inflammation. Workflow stages: product release QC, generators and isotope purity, stability, storage, decay and waste.
Input fields
BatchNumber, Radionuclidic_Purity_Percent, Radiochemical_Purity_Percent, Specific_Activity_MBq_mg, Particle_Size_Mean_nm, Particle_Size_Max_nm, Aggregation_Percent, Free_Erbium_Ion_Percent, Target_Material_Residue_ppm, pH_Value
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API / calculation and rule-based 4
Generator Elution Predictor API / calculation and rule-basedGeneral RPH
What it does
Utility calculates PREDICTED daughter nuclide activity in generator eluate: Accounts for parent nuclide decay since calibration Accounts for daughter nuclide ingrowth between elutions Applies elution efficiency to calculate activity in eluate
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: renal and urinary, cardiovascular, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, GeneratorType, GeneratorCalibrationActivityMBq, CalibrationDateTime, LastElutionDateTime, NextElutionDateTime, ElutionEfficiencyPercent, DosePerPatientMBq
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API / calculation and rule-based 4
Indium111 Capromab Pendetide Checker API / calculation and rule-basedIn-111
What it does
Utility checks critical parameters of the monoclonal antibody-based radiopharmaceutical: Radiochemical purity (≥90%) Free Indium-111 impurity (≤5%) Colloidal Indium-111 impurity (≤5%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeIndium111Percent, ColloidalIndium111Percent, SpecificActivityMBqPerMg, pH, EndotoxinsEU, SterilityTest, HeavyMetalsPPM, ProteinConcentrationMgPerMl
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API / calculation and rule-based 4
Iodine123 FPCT Quality Checker API / calculation and rule-basedI-123
What it does
Utility checks critical parameters of the radiopharmaceutical for dopamine transporter imaging: Radiochemical purity (≥95%) Free Iodine-123 impurity (≤5%) Radionuclidic impurity Iodine-124 (≤0.3%) — CRITICAL!
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: brain and CNS, endocrine, thyroid and NET. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeIodine123Percent, RadionuclidicPurityI124Percent, RadionuclidicPurityI125Percent, SpecificActivityGBqPerUmol, pH, EndotoxinsEU, SterilityTest, EthanolPercent
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API / calculation and rule-based 4
Iodine123 Ioflupane Quality Checker API / calculation and rule-basedI-123
What it does
Utility checks critical parameters of the radiopharmaceutical for dopamine transporter imaging: Radiochemical purity (≥95%) Free Iodine-123 impurity (≤5%) Radionuclidic impurity Iodine-124 (≤0.3%) — CRITICAL!
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: brain and CNS, endocrine, thyroid and NET. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeIodine123Percent, RadionuclidicPurityI124Percent, RadionuclidicPurityI125Percent, SpecificActivityGBqPerUmol, pH, EndotoxinsEU, SterilityTest, EthanolPercent
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API / calculation and rule-based 4
Iodine123 MIBG Quality Checker API / calculation and rule-basedI-123
What it does
Utility checks critical parameters of Iodine-123 MIBG radiopharmaceutical: Radiochemical purity (≥95%) Free Iodine-123 impurity (≤5%) Radionuclidic impurity Iodine-124 (≤0.5%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: cardiovascular, brain and CNS, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeIodine123Percent, RadionuclidicPurityI124Percent, RadionuclidicPurityI125Percent, SpecificActivityMBqPerUg, pH, EndotoxinsEU, SterilityTest, AppearanceScore
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API / calculation and rule-based 4
Iodine123 Na I Quality Checker API / calculation and rule-basedI-123I-124
What it does
Utility checks critical parameters of Sodium Iodide I-123: Radionuclidic purity (≥99% I-123) Iodine-124 impurity (≤0.5%) — CRITICAL! Iodine-125 impurity (≤0.5%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: endocrine, thyroid and NET. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadionuclidicPurityI123Percent, RadionuclidicImpurityI124Percent, RadionuclidicImpurityI125Percent, RadiochemicalPurityPercent, pH, EndotoxinsEU, SterilityTest, TotalActivityMBq, AppearanceScore
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API / calculation and rule-based 4
Iodine124 MAB Quality Checker API / calculation and rule-basedI-123I-124I-125
What it does
Utility checks critical parameters of Iodine-124 labeled monoclonal antibodies: Radiochemical purity (≥90%) Free Iodine-124 impurity (≤5%) Immunoreactive fraction (≥70%) — CRITICAL!
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, RadiochemicalPurityPercent, FreeIodine124Percent, RadionuclidicPurityI123Percent, RadionuclidicPurityI125Percent, SpecificActivityMBqPerMg, ImmunoreactiveFractionPercent, AggregatePercent, pH, EndotoxinsEU
Related utilities
API / calculation and rule-based 4
Manganese52 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
Utility checks critical parameters of Manganese-52: Radionuclidic purity (≥99.0%) Manganese-54 impurity (≤0.1%) Manganese-56 impurity (≤1.0%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: hepatobiliary and GI. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Manganese54ImpurityPercent, Manganese56ImpurityPercent, RadiochemicalPurityPercent, FreeManganesePercent, pH, EndotoxinsEU, SterilityTest
Related utilities
API / calculation and rule-based 4
Mercury197 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
Utility checks critical parameters of Mercury-197: Radionuclidic purity (≥99.0%) Mercury-197m impurity (≤1.0%) Mercury-203 impurity (≤0.1%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: renal and urinary, hepatobiliary and GI. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Mercury197mImpurityPercent, Mercury203ImpurityPercent, RadiochemicalPurityPercent, FreeMercuryPercent, pH, EndotoxinsEU, SterilityTest
Related utilities
API / calculation and rule-based 4
Palladium103 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
Utility checks critical parameters of Palladium-103: Radionuclidic purity (≥99.9%) Palladium-109 impurity (≤0.1%) Chemical purity (≥99.0%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: lymphatic, infection and inflammation, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, instruments, devices and radiation safety.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Palladium109ImpurityPercent, Silver103ImpurityPercent, RadiochemicalPurityPercent, ChemicalPurityPercent, pH, EndotoxinsEU, SterilityTest
Related utilities
API / calculation and rule-based 4
Phosphorus32 Chromic Phosphate Checker API / calculation and rule-basedP-32
What it does
Utility checks critical parameters of colloidal Phosphorus-32: Radionuclidic purity (≥99.9%) Phosphorus-33 impurity (≤0.1%) Particle size (0.5–10.0 μm) — CRITICAL!
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: bone and musculoskeletal, lymphatic, infection and inflammation. Workflow stages: product release QC, generators and isotope purity, stability, storage, decay and waste.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Phosphorus33ImpurityPercent, ParticleSizeMicrons, ColloidalStabilityPercent, pH, EndotoxinsEU, SterilityTest, FreePhosphatePercent
Related utilities
API / calculation and rule-based 4
Phosphorus32 Orthophosphate Checker API / calculation and rule-basedP-32
What it does
Utility checks critical parameters of Phosphorus-32 solution: Radionuclidic purity (≥99.9%) Phosphorus-33 impurity (≤0.1%) Radiochemical purity (≥95%, orthophosphate form)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Phosphorus33ImpurityPercent, RadiochemicalPurityPercent, pH, EndotoxinsEU, SterilityTest, OsmolalityMOsmKg, ProductType
Related utilities
API / calculation and rule-based 4
Platinum195m Quality Checker API / calculation and rule-basedGeneral RPH
What it does
Utility checks critical parameters of Platinum-195m: Radionuclidic purity (≥99.0%) Pt-191 and Pt-193m impurities (≤0.5% each) Radiochemical purity (≥95%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: renal and urinary, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, dosimetry and therapy planning.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Platinum191ImpurityPercent, Platinum193mImpurityPercent, RadiochemicalPurityPercent, FreePlatinumPercent, pH, EndotoxinsEU, SterilityTest
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API / calculation and rule-based 4
Radiation Dose Calculator API / calculation and rule-basedGeneral RPH
What it does
Utility calculates ESTIMATED absorbed dose based on ICRP data (ICRP 106, 128): Effective dose (mSv) for overall radiation burden assessment Target organ and critical organ doses (mGy) Patient weight correction
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: renal and urinary, hepatobiliary and GI, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, dosimetry and therapy planning.
Input fields
PatientID, Nuclide, AdministeredActivityMBq, PatientWeightKg, TargetOrgan, PatientSex
Related utilities
API / calculation and rule-based 4
Radiochemical Purity Checker API / calculation and rule-basedGeneral RPH
What it does
Utility calculates radiochemical purity as (target peak area / total peak area) × 100% from chromatographic analysis data. Supports both methods: TLC (Thin Layer Chromatography) and HPLC (High Performance Liquid Chromatography). Does not use machine learning — only mathematical calculation and interpretation based on pharmaceutical standards.
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, stability, storage, decay and waste.
Input fields
BatchNumber, AnalysisType, TargetPeakArea, TotalPeakArea, RfValue
Related utilities
API / calculation and rule-based 4
Radiolabeled Nanoparticle Quality Checker API / calculation and rule-basedGeneral RPH
What it does
Utility checks quality of radiolabeled nanoparticles (liposomes, LNPs, polymer NPs) for research use: Radionuclide quality: specific activity, radiochemical purity, free radionuclide, parent impurity Nanoparticle characteristics: particle size, polydispersity index (PDI), zeta potential Safety parameters: pH, endotoxins, sterility, heavy metals
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: pulmonary and ventilation, hepatobiliary and GI, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, Radionuclide, NanoparticleType, TargetOrgan, SpecificActivityMBqPerUmol, RadiochemicalPurityPercent, FreeRadionuclidePercent, ParentNuclideImpurityPercent, ParticleSizeNm, PolydispersityIndex
Related utilities
API / calculation and rule-based 4
Radionuclide Impurity Checker API / calculation and rule-basedGeneral RPH
What it does
Utility automatically calculates radionuclide impurity percentage with half-life correction. Activity is decay-corrected to reference time (calibration/production time). Supports any radionuclide combinations — just specify half-lives. Does not use machine learning — only physics calculations using formula: A_ref = A_meas × exp(λ × t)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Workflow stages: product release QC, generators and isotope purity, stability, storage, decay and waste.
Input fields
BatchNumber, MainRadionuclide, MainActivityMeasMBq, ImpurityRadionuclide, ImpurityActivityMeasMBq, TimeDiffHours, MainHalfLifeHours, ImpurityHalfLifeHours
Related utilities
API / calculation and rule-based 4
Radionuclide Mix Checker API / calculation and rule-basedGeneral RPH
What it does
Utility performs CRITICAL data verification to prevent catastrophic errors: Batch number verification (entered vs expected) Radionuclide verification (entered vs expected) Activity deviation check from expected value (±20%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
RecordID, EnteredBatchNumber, ExpectedBatchNumber, EnteredNuclide, ExpectedNuclide, EnteredActivityMBq, MeasurementDateTime, TechnicianID, WorkstationID, ExpectedActivityMBq
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API / calculation and rule-based 4
Recoil Effect Checker API / calculation and rule-basedGeneral RPH
What it does
Utility assesses consequences of bond rupture during alpha decay: Calculation of Recoil Energy Comparison with chemical bond energy Assessment of free daughter nuclide percentage
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: renal and urinary, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, ParentIsotope, DaughterIsotope, AlphaEnergyMeV, BondEnergyKcalPerMol, ChelatorStabilityConstant, FreeDaughterPercent, RenalUptakeSUV, TimePostLabelingHours, ProductType
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API / calculation and rule-based 4
Rhenium-186 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
The utility checks RCP, free perrhenate, hydrolyzed rhenium, particle size (colloids), sterility. Does not use machine learning — rule-based logic only. Rhenium186QualityChecker.exe → demo mode Rhenium186QualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, bone and musculoskeletal. Workflow stages: product release QC, generators and isotope purity, dosimetry and therapy planning.
Input fields
BatchNumber, Formulation_Type, Radionuclidic_Purity_Percent, Radiochemical_Purity_Percent, Specific_Activity_MBq_mg, Free_Perrhenate_Percent, Hydrolyzed_Reduced_Re_Percent, Particle_Size_Mean_nm, pH_Value, SterilityTest
Related utilities
API / calculation and rule-based 4
Rubidium82 Chloride Quality Checker API / calculation and rule-basedRb-82Sr-82
What it does
Utility checks critical parameters of Sr-82/Rb-82 generator eluate: Strontium-82 breakthrough (≤20 Bq/MBq Rb-82) — CRITICAL! Strontium-85 breakthrough (≤500 Bq/MBq Rb-82) Radiochemical purity (≥95%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: cardiovascular, bone and musculoskeletal. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, ElutedActivityMBq, BreakthroughSr82BqPerMBq, BreakthroughSr85BqPerMBq, RadiochemicalPurityPercent, pH, AppearanceClarity, SterilityTest, EndotoxinsEU, SalineVolumeMl
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API / calculation and rule-based 4
Scandium-47 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
The utility checks RCP, free scandium, long-lived impurities (Sc-46), sterility. Does not use machine learning — rule-based logic only. Scandium47QualityChecker.exe → demo mode Scandium47QualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity, dosimetry and therapy planning.
Input fields
BatchNumber, Radiopharmaceutical, Radionuclidic_Purity_Percent, Radiochemical_Purity_Percent, Specific_Activity_MBq_nmol, Free_Scandium_Ion_Percent, Long_Lived_Impurities_Percent, Target_Metal_Residue_ppm, pH_Value, Ethanol_Content_Percent
Related utilities
API / calculation and rule-based 4
Scandium44 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
Utility checks critical parameters of Scandium-44: Radionuclidic purity (≥99.0%) Scandium-43 impurity (≤1.0%) Scandium-47 impurity (≤0.5%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: hepatobiliary and GI, bone and musculoskeletal, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Scandium43ImpurityPercent, Scandium47ImpurityPercent, Scandium46ImpurityPercent, RadiochemicalPurityPercent, FreeScandiumPercent, pH, EndotoxinsEU
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API / calculation and rule-based 4
Silver105 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
Utility checks critical parameters of Silver-105: Radionuclidic purity (≥99.0%) Silver-106m impurity (≤0.5%) Silver-110m impurity (≤0.01%) — CRITICAL!
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: hepatobiliary and GI, oncology and theranostics. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Silver106mImpurityPercent, Silver110mImpurityPercent, RadiochemicalPurityPercent, FreeSilverPercent, pH, EndotoxinsEU, SterilityTest
Related utilities
API / calculation and rule-based 4
Strontium82 Breakthrough Checker API / calculation and rule-basedRb-82Sr-82
What it does
Utility checks strontium breakthrough compliance with USP <823>: Sr-82 Limit: ≤20 Bq per 1 MBq Rb-82 Sr-85 Limit: ≤500 Bq per 1 MBq Rb-82 Strontium accumulates in bones and irradiates bone marrow.
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: cardiovascular, bone and musculoskeletal. Workflow stages: product release QC, generators and isotope purity, stability, storage, decay and waste.
Input fields
BatchNumber, Rb82ActivityMBq, Sr82ActivityBq, Sr85ActivityBq, ElutionVolumeMl, TimeSinceCalibrationHours, GeneratorID
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API / calculation and rule-based 4
Tc99m Colloid Checker API / calculation and rule-basedTc-99m
What it does
Utility performs DEEP colloid phase analysis with: Current colloid percentage check (≤5% for most agents) Stability prediction until end of shelf life (6-12 hours) Trend analysis with previous measurements
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: renal and urinary, hepatobiliary and GI, cardiovascular, bone and musculoskeletal. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, ProductType, ColloidPhasePercent_Current, pH, MeasurementDateTime, RadiolabelingDateTime, StorageTemperatureC, PreviousColloidPhasePercent, PreviousMeasurementDateTime
Related utilities
API / calculation and rule-based 4
Tc99m HMPAO Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m HMPAO: Radiochemical purity of lipophilic complex (≥80%) Secondary complex (≤15%) Free pertechnetate (≤5%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: renal and urinary, hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadiochemicalPurityPercent, SecondaryComplexPercent, FreePertechnetatePercent, ReducedHydrolyzedTcPercent, pH, EndotoxinsEU, SterilityTest, TimeSinceReconstitutionMin
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API / calculation and rule-based 4
Technetium99m ECD Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m ECD: Radiochemical purity (≥95%) Free pertechnetate (≤2%) Colloidal technetium (≤3%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: renal and urinary, hepatobiliary and GI, cardiovascular, brain and CNS, endocrine, thyroid and NET. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadiochemicalPurityPercent, FreePertechnetatePercent, ReducedHydrolyzedTcPercent, pH, EndotoxinsEU, SterilityTest, TimeSinceReconstitutionMin, ProductType
Related utilities
API / calculation and rule-based 4
Technetium99m Exametazime Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical parameters of Tc-99m HMPAO: Radiochemical purity of lipophilic complex (≥80%) Secondary complex (≤15%) Free pertechnetate (≤5%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: hepatobiliary and GI, brain and CNS, endocrine, thyroid and NET, blood, cells and marrow, lymphatic, infection and inflammation. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, TotalActivityMBq, RadiochemicalPurityPercent, SecondaryComplexPercent, FreePertechnetatePercent, ReducedHydrolyzedTcPercent, pH, EndotoxinsEU, SterilityTest, TimeSinceReconstitutionMin
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API / calculation and rule-based 4
Technetium99m Generator Quality Checker API / calculation and rule-basedTc-99m
What it does
Utility checks critical eluate parameters: molybdenum-99 and iodine-131 breakthrough (calculated as % of Tc-99m activity), eluate volume, eluate pH. Does not use machine learning — only mathematical calculation of breakthrough percentages and pharmacopoeial limit checks. Technetium99mGeneratorQualityChecker.exe → demo mode (console output)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: renal and urinary, cardiovascular, endocrine, thyroid and NET, bone and musculoskeletal. Workflow stages: synthesis, labelling and kit reconstitution, product release QC, generators and isotope purity.
Input fields
BatchNumber, Tc99mActivityMBq, Mo99ActivityMBq, I131ActivityMBq, EluateVolumeMl, EluatePH
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API / calculation and rule-based 4
Terbium-152 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
The utility checks RCP, long-lived impurities (Tb-155/156), free terbium, specific activity. Does not use machine learning — rule-based logic only. Terbium152QualityChecker.exe → demo mode Terbium152QualityChecker.exe input.csv output.json → evaluate data
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: hepatobiliary and GI, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: product release QC, generators and isotope purity.
Input fields
BatchNumber, Radiopharmaceutical, Radionuclidic_Purity_Percent, Radiochemical_Purity_Percent, Specific_Activity_MBq_nmol, Long_Lived_Tb_Impurities_Percent, Free_Terbium_Ion_Percent, Target_Material_Residue_ppm, pH_Value, Ethanol_Content_Percent
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API / calculation and rule-based 4
Thulium170 Quality Checker API / calculation and rule-basedGeneral RPH
What it does
Utility checks critical parameters of Thulium-170: Radionuclidic purity (≥99.5%) Thulium-171 impurity (≤0.1%) — CRITICAL! Ytterbium-175 impurity (≤0.5%)
Why it is needed
Supports control of the starting radionuclide, generator eluate, breakthrough and radionuclidic purity before final radiopharmaceutical release.
Where and when to use it
during generator acceptance, elution control, incoming radionuclide QC and investigation of unexpected peaks or impurities. Medical use: bone and musculoskeletal, lymphatic, infection and inflammation. Workflow stages: product release QC, generators and isotope purity, imaging QC and quantitative interpretation.
Input fields
BatchNumber, TotalActivityMBq, RadionuclidicPurityPercent, Thulium171ImpurityPercent, Ytterbium175ImpurityPercent, RadiochemicalPurityPercent, FreeThuliumPercent, pH, EndotoxinsEU, SterilityTest
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API / calculation and rule-based 4
xenon, ventilation and medical gases 29
Xe-129, Xe-133, Xe-127, hyperpolarization, SEOP, T1, mixing, scavenging, transport, recovery and ventilation imaging.
API / calculation and rule-based 6
Medical Gas Purity ISO 6145 Checker API / calculation and rule-basedXe-129
What it does
Utility controls gas quality per ISO/USP standards: Oxygen (critical for hyperpolarization) Moisture (critical for equipment) CO2 and hydrocarbons (patient safety)
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: product release QC, instruments, devices and radiation safety.
Input fields
BatchNumber, ProductName, O2_ppm, N2_ppm, H2O_ppm, CO2_ppm, HC_ppm, Max_O2, Max_H2O, Max_CO2
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TriMix Gas Composition Verifier API / calculation and rule-basedXe-129
What it does
Utility checks mixing accuracy of Xe / N2 / O2: Deviation of each component from target Absolute oxygen safety level Gas sum balance (100%)
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: imaging QC and quantitative interpretation.
Input fields
BatchNumber, ProductName, Target_Xe, Target_N2, Target_O2, Measured_Xe, Measured_N2, Measured_O2, Max_Dev, Min_Safe_O2
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Xe Isotopic Enrichment Verifier API / calculation and rule-basedXe-129
What it does
Utility checks mass spectrometry data against certificate: Xe-129 percentage content Sum of impurity isotopes Mass balance (sum 100%)
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: product release QC.
Input fields
BatchNumber, ProductName, Xe124, Xe126, Xe128, Xe129, Xe130, Xe131, Xe132, Xe134
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Xe-127 Production Yield & Purity Analyzer API / calculation and rule-basedI-123Xe-127Xe-129
What it does
Utility controls cyclotron production process of Xe-127: Specific yield (MBq/uAh) Radionuclidic purity (% Xe-127) Impurity levels (Xe-125, I-123)
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: product release QC, generators and isotope purity, stability, storage, decay and waste.
Input fields
BatchNumber, ProductName, Iodine_Mass_g, Beam_uA, Time_h, Act_Xe127_MBq, Act_Xe125_MBq, Act_I123_MBq, Min_Yield, Max_Xe125_Percent
Related utilities
Xe-127 Theranostic Potential Analyzer API / calculation and rule-basedXe-127Xe-129
What it does
Utility evaluates Xe-127 suitability for theranostics: Diagnostic contrast and resolution Patient radiation dose Logistics potential (half-life)
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation, oncology and theranostics. Workflow stages: imaging QC and quantitative interpretation, instruments, devices and radiation safety.
Input fields
BatchNumber, ProductName, Contrast_Ratio, Resolution_mm, Dose_uSv_per_MBq, Bio_Half_Life_h, Phys_Half_Life_h, Cost_Usd, Max_Dose, Min_Contrast
Related utilities
Xe-129 Isotopic Enrichment Verifier API / calculation and rule-basedXe-129
What it does
Utility checks mass spectrometry data against certificate: Xe-129 percentage content Sum of impurity isotopes Mass balance (sum 100%)
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: product release QC.
Input fields
BatchNumber, ProductName, Xe124, Xe126, Xe128, Xe129, Xe130, Xe131, Xe132, Xe134
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Instrumental 12
Hyperpolarization Decay Kinetics Monitor InstrumentalXe-129
What it does
Utility analyzes spin polarization lifetime (T1): Measured T1 calculation Remaining signal life prediction Anomalous decay detection (O2 impurities, bad vials)
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation, hepatobiliary and GI. Workflow stages: product release QC, dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, ProductName, Initial_Pol_Percent, Start_Time_H, Current_Pol_Percent, Elapsed_Time_H, O2_ppm, Wall_Factor, Min_Acceptable_Pol, Expected_T1_H
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Laser Wavelength & Power Stability Checker InstrumentalXe-129
What it does
Utility controls laser parameters for optical pumping: Wavelength accuracy (atomic transition match) Power stability (noise absence) Thermal drift
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
BatchNumber, ProductName, Center_Wavelength_nm, Target_Wavelength_nm, Output_Power_W, Target_Power_W, Wavelength_Drift_nm, Power_Fluctuation_Percent, Max_Drift_nm, Max_Fluct_Percent
Related utilities
Magnetic Field Homogeneity Mapper InstrumentalXe-129
What it does
Utility analyzes magnetic field map (B0) in polarization volume: Peak frequency deviation (Hz) Root Mean Square inhomogeneity (RMS) Uniformity in ppm
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, instruments, devices and radiation safety.
Input fields
BatchNumber, ProductName, Central_Freq_Hz, Max_Dev_Hz, RMS_Hz, VOI_Diameter_mm, Max_Allowed_Peak_Hz, Max_Allowed_RMS_Hz
Related utilities
API / calculation and rule-based 4
MRI Voxel Signal Uniformity Analyzer InstrumentalXe-129
What it does
Utility evaluates HP-gas MRI image quality: Signal Coefficient of Variation (CV) Signal-to-Noise Ratio (SNR) Intensity dynamic range
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
BatchNumber, ProductName, Mean_Signal, Std_Dev, Max_Signal, Min_Signal, SNR, Max_CV_Percent, Min_SNR
Related utilities
Spin-Exchange Optical Pumping Efficiency Monitor InstrumentalXe-129
What it does
Utility evaluates hyperpolarization process quality: Achieved polarization level Signal buildup time Ratio to theoretical limit
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
BatchNumber, ProductName, Laser_W, Cell_T_C, Rb_Factor, B_Field_G, Initial_Pol_Percent, Buildup_Time_sec, Max_Theoretical_Pol, Min_Acceptable_Pol
Related utilities
T1 Relaxation Kinetics Predictor InstrumentalXe-129
What it does
Utility predicts hyperpolarization lifetime: Oxygen impact (paramagnetic quenching) Vial wall quality impact Polarization level prediction at scan time
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: product release QC, dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, ProductName, Initial_Pol_Percent, O2_ppm, Temperature_C, Field_T, Surface_Factor, Target_Time_H, Min_Req_Pol
Related utilities
T1 Relaxation Time Predictor InstrumentalXe-129
What it does
Utility predicts hyperpolarization lifetime: Oxygen impact (paramagnetic quenching) Vial wall quality impact Polarization level prediction at scan time
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: product release QC, dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, ProductName, Initial_Pol_Percent, O2_ppm, Temperature_C, Field_T, Surface_Factor, Target_Time_H, Min_Req_Pol
Related utilities
Xe-129 MRI Signal Uniformity Analyzer InstrumentalXe-129
What it does
Utility evaluates HP-gas MRI image quality: Signal Coefficient of Variation (CV) Signal-to-Noise Ratio (SNR) Intensity dynamic range
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
BatchNumber, ProductName, Mean_Signal, Std_Dev, Max_Signal, Min_Signal, SNR, Max_CV_Percent, Min_SNR
Related utilities
Xe-129 Polarization Level Checker InstrumentalXe-129
What it does
Utility controls key parameter of hyperpolarized MRI: Absolute polarization level (%) Signal enhancement factor relative to thermal equilibrium Deviation from target value
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
BatchNumber, ProductName, Measured_Pol_Percent, Thermal_Signal, HP_Signal, Pumping_Time_Min, Laser_W, Min_Pol, Target_Pol
Related utilities
Xe-133 Ventilation Dosimetry & Scavenging QC InstrumentalXe-129Xe-133
What it does
Utility controls radiation safety during Xe-133 use: Patient effective dose Room air gas concentration Exhaled gas scavenging efficiency
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: renal and urinary, pulmonary and ventilation. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, instruments, devices and radiation safety.
Input fields
BatchNumber, ProductName, Admin_MBq, Inhale_Min, Washout_Min, Lung_Dose_mSv, Bladder_Dose_mSv, Total_Dose_mSv, Room_Conc_Bq_m3, Recovery_Percent
Related utilities
API / calculation and rule-based 4
Xe-133 Ventilation SPECT QC InstrumentalXe-129Xe-133
What it does
Utility evaluates technical parameters of SPECT data acquisition: Total statistics (count number) Detector field of view uniformity Peak count rate
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, instruments, devices and radiation safety.
Input fields
BatchNumber, ProductName, Admin_MBq, Acq_Time_Min, Matrix, Total_Counts_k, Peak_CPS, Uniformity_Percent, Min_Counts, Max_Unif
Related utilities
API / calculation and rule-based 4
Xe-O2 Mixing Ratio & Polarization Loss Checker InstrumentalXe-129
What it does
Utility balances between safety (O2) and signal quality (Xe): Polarization loss percentage during mixing Oxygen level (patient safety) Paramagnetic quenching factor
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation, hepatobiliary and GI. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation.
Input fields
BatchNumber, ProductName, Xe_Percent, O2_Percent, Initial_Pol, Final_Pol, Time_Sec, Max_Loss_Percent, Min_O2_Percent
Related utilities
API / calculation and rule-based 4
Medical devices 11
Exhaled Gas Scavenging & Recovery QC Medical devicesXe-129
What it does
Utility controls economics and safety of gas return process: Collection efficiency (>85%) CO2 and moisture removal Isotopic purity preservation
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation.
Input fields
BatchNumber, ProductName, Administered_Volume_L, Exhaled_Captured_Volume_L, Initial_Xe_Purity_Percent, Recovered_Xe_Purity_Percent, Recovered_CO2_ppm, Recovered_H2O_ppm, Recovered_O2_ppm, Min_Recovery_Eff
Related utilities
Exhaled Gas Scavenging Efficiency Checker Medical devicesXe-129
What it does
Utility controls balance of administered and collected xenon: Pure Xe-129 volume calculation Collection efficiency (>90%) Breathing circuit leak detection
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation.
Input fields
BatchNumber, ProductName, Administered_Volume_L, Captured_Exhaled_Volume_L, Administered_Xe_Conc_Percent, Captured_Xe_Conc_Percent, Min_Efficiency
Related utilities
Gas Mixing Ratio & Hypoxia Risk Checker Medical devicesXe-129
What it does
Utility controls breathing mixture safety: Oxygen level (≥19-21%) Xenon level (≤30% for conscious patients) Gas balance (100%)
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation, hepatobiliary and GI.
Input fields
BatchNumber, ProductName, Xe_Conc_Percent, O2_Conc_Percent, N2_Conc_Percent, Min_O2_Level, Max_Xe_Level
Related utilities
Hyperpolarized Gas Delivery Safety QC Medical devicesXe-129
What it does
Utility monitors gas administration parameters to patient: Volume dosing accuracy Peak airway pressure Flow rate (turbulence)
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation, hepatobiliary and GI. Workflow stages: instruments, devices and radiation safety.
Input fields
BatchNumber, ProductName, Delivered_Volume, Target_Volume, Flow_Rate, Peak_Pressure, Max_Pressure, Max_Flow, Min_O2, Measured_O2
Related utilities
API / calculation and rule-based 4
Patient Hypoxia Risk During Xe Breathing Checker Medical devicesXe-129
What it does
Utility evaluates patient safety during xenon inhalation: Minimum SpO2 level Inspired oxygen concentration (FiO2) Desaturation depth
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation.
Input fields
BatchNumber, ProductName, Inspired_O2_Percent, Xe_Conc_Percent, Baseline_SpO2, Hemoglobin, Min_Monitored_SpO2, Avg_Monitored_SpO2, Duration_Sec, Critical_Threshold
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Room Air Xe Concentration Monitor Medical devicesXe-129
What it does
Utility controls environmental safety in laboratory/cabinet: Xenon concentration (ppm) Calculated oxygen level reduction Ventilation efficiency (ACH)
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation.
Input fields
BatchNumber, ProductName, Measured_Xe_ppm, Room_Volume_m3, Ventilation_ACH, Max_Allowed_Xe_ppm, O2_Risk_Threshold
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Storage Vial Surface Quality Checker Medical devicesXe-129
What it does
Utility evaluates suitability of glass containers for hyperpolarized xenon storage: Wall relaxivity activity Anti-relaxation coating uniformity Paramagnetic impurity content
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: product release QC, stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
BatchNumber, ProductName, Relaxivity_ms, Paramag_ppm, Coating_Percent, Roughness_nm, Pressure_Bar, Max_Relaxivity, Min_Coating
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Transport Shock & Temperature Logger QC Medical devicesXe-129
What it does
Utility checks transport condition recorder data: Maximum and minimum temperature Peak shock loads (G-force) Number of shock events
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation, hepatobiliary and GI. Workflow stages: stability, storage, decay and waste.
Input fields
BatchNumber, ProductName, Max_Temp, Min_Temp, Avg_Temp, Max_Shock_G, Shock_Count, Max_Allowed_Temp, Min_Allowed_Temp, Max_Shock
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Xe Recovery & Recycling Efficiency Analyzer Medical devicesXe-129
What it does
Utility evaluates economics and quality of gas return process: Volume and mass collection efficiency Gas purity after cleaning Financial savings per session
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: product release QC, stability, storage, decay and waste.
Input fields
BatchNumber, ProductName, Admin_Vol_L, Recovered_Raw_L, Recycled_Pure_L, Init_Purity_Percent, Rec_Purity_Percent, Cost_Per_L, Min_Eff_Percent, Min_Pur_Percent
Related utilities
Xe Recovery Efficiency & Recycling QC Medical devicesXe-129
What it does
Utility evaluates economics and quality of gas return process: Volume and mass collection efficiency Gas purity after cleaning Financial savings per session
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation. Workflow stages: product release QC, stability, storage, decay and waste.
Input fields
BatchNumber, ProductName, Admin_Vol_L, Recovered_Raw_L, Recycled_Pure_L, Init_Purity_Percent, Rec_Purity_Percent, Cost_Per_L, Min_Eff_Percent, Min_Pur_Percent
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Xe-O2 Mixture Safety Blender QC Medical devicesXe-129
What it does
Utility checks medical gas blender accuracy: O2 and Xe flow errors Output oxygen concentration (safety) Mixing ratio accuracy
Why it is needed
Supports gas and ventilation workflows covering gas quality, polarization, delivery, scavenging and related device checks.
Where and when to use it
during gas-mixture release, hyperpolarized-gas preparation, MRI/SPECT ventilation, recovery/scavenging and transport control. Medical use: pulmonary and ventilation, hepatobiliary and GI.
Input fields
BatchNumber, ProductName, Target_O2_Flow, Measured_O2_Flow, Target_Xe_Flow, Measured_Xe_Flow, Output_O2_Percent, Min_Safe_O2, Max_Flow_Error
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PET scanner state, gamma camera and radiation physics 29
The linked medical-device/radiation-physics layer: PET detector QC, normalization, AC map, cross-calibration, TOF, gamma-camera uniformity, source strength and staff dose.
API / calculation and rule-based 1
Decay Corrector Ex for Ge-68/Ga-68 API / calculation and rule-basedGa-68Ge-68
What it does
Ge-68 and Ga-68 Source Decay Correction. Calculates expected source activity on the check date and compares it with the measured value. activity calculation from half-life and dates. measured-to-expected activity deviation. minimum residual activity check for the selected procedure..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
SourceID, Radionuclide, InitialActivityMBq, CalibrationDate, CheckDate, MeasuredActivityMBq, HalfLifeHours
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Instrumental 11
Gamma Camera Uniformity Check For Renal InstrumentalTc-99m
What it does
Utility evaluates detector sensitivity uniformity: Integral uniformity (≤5%) Differential uniformity (≤3%) Statistical reliability (≥10 million counts)
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Medical use: renal and urinary, pulmonary and ventilation, bone and musculoskeletal. Workflow stages: imaging QC and quantitative interpretation, instruments, devices and radiation safety.
Input fields
CameraID, CheckDate, IntegralUniformityPercent, DifferentialUniformityPercent, TotalCounts, EnergyWindowCenterKeV, EnergyWindowWidthPercent, CollimatorType, MaxPixelCount, MinPixelCount
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PET Blank Sinogram Comparator InstrumentalGeneral RPH
What it does
Reference and Current Blank Sinogram Comparison. Compares summary metrics of the current blank sinogram with the approved scanner baseline. mean count deviation. change in dispersion and uniformity index. maximum local deviation and dead-detector count..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: instruments, devices and radiation safety.
Input fields
ScannerID, CheckDate, MeanReferenceCounts, MeanCurrentCounts, StdDevReference, StdDevCurrent, MaxDeviationPercent, DeadDetectorCount, UniformityIndex
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API / calculation and rule-based 4
PET Detector Efficiency Outlier Checker InstrumentalGeneral RPH
What it does
PET Detector Efficiency Outlier Detection. Evaluates detector relative-efficiency dispersion and identifies dead, noisy and affected detector blocks. efficiency coefficient of variation. minimum and maximum relative to the mean. dead/noisy detector counts and affected blocks..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: instruments, devices and radiation safety.
Input fields
ScannerID, CheckDate, TotalDetectors, MeanEfficiency, StdDevEfficiency, MinEfficiency, MaxEfficiency, DeadDetectorCount, NoisyDetectorCount, AffectedBlocks
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API / calculation and rule-based 4
PET Detector Pair Normalization Cross-Checker InstrumentalGeneral RPH
What it does
PET Detector-Pair Normalization Factor Cross-Check. Independently checks summary characteristics of vendor normalization factors against a calculated factor set. mean-factor comparison. min/max range and standard deviation. zero, infinite and duplicate LOR detection..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: instruments, devices and radiation safety.
Input fields
ScannerID, NormalizationID, CheckDate, TotalLORs, MeanVendorFactor, MeanCalculatedFactor, StdDevFactors, MaxFactor, MinFactor, ZeroOrInfiniteCount
Related utilities
API / calculation and rule-based 4
PET Energy Window Stability Checker InstrumentalGeneral RPH
What it does
PET Energy-Window Stability Check. Checks the 511-keV photopeak position, energy resolution and configured energy-window parameters. photopeak shift from 511 keV. FWHM energy resolution. window centering and scatter fraction..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
ScannerID, CheckDate, MeasuredPeakEnergyKeV, EnergyResolutionPercent, LowerLevelDiscriminatorKeV, UpperLevelDiscriminatorKeV, RandomsRateKcps, ScatterFractionPercent
Related utilities
API / calculation and rule-based 4
PET Normalization Acquisition Checker InstrumentalGeneral RPH
What it does
PET Normalization Acquisition Check. Checks whether sufficient statistics were acquired and whether the acquisition is suitable for normalization-factor calculation. total counts and duration. centering and axial coverage. interruptions and zero-count detector blocks..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: imaging QC and quantitative interpretation, instruments, devices and radiation safety.
Input fields
ScannerID, AcquisitionID, CheckDate, PhantomType, SourceID, TotalCounts, MinRequiredCounts, AcquisitionDurationMin, MinRequiredDurationMin, IsCentered
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API / calculation and rule-based 4
PET Normalization Factor Distribution Checker InstrumentalGeneral RPH
What it does
PET Normalization Factor Distribution Check. Checks the statistical distribution of normalization factors and the fraction of invalid or outlying values. mean, median and standard deviation. percentile range and min/max. invalid count and outlier fraction..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: instruments, devices and radiation safety.
Input fields
ScannerID, NormalizationID, CheckDate, TotalFactors, MeanFactor, MedianFactor, StdDevFactor, MinFactor, MaxFactor, Percentile5
Related utilities
API / calculation and rule-based 4
PET Normalization Trend Checker InstrumentalGeneral RPH
What it does
PET Normalization and Detector-State Trend Check. Compares the current normalization with the previous run and installation baseline to detect gradual drift. mean-factor drift. CV change. new dead detectors and deviation from baseline..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
ScannerID, CurrentNormID, PreviousNormID, BaselineNormID, CurrentMeanFactor, PreviousMeanFactor, BaselineMeanFactor, CurrentCV, PreviousCV, BaselineCV
Related utilities
API / calculation and rule-based 4
PET Source Strength Logger InstrumentalGa-68Ge-68
What it does
PET QC Source Activity Log. Links the source, certificate, phantom and PET scanner and compares measured activity with expected activity. certificate and phantom-geometry record. expected-activity calculation. measured deviation and ScannerID linkage..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: instruments, devices and radiation safety.
Input fields
SourceID, ScannerID, Radionuclide, CertificateNumber, PhantomGeometry, ReferenceActivityMBq, ReferenceDate, MeasuredActivityMBq, MeasurementDate, HalfLifeHours
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PET TOF Resolution And Timing Offset Checker InstrumentalGeneral RPH
What it does
PET TOF Resolution and Timing-Offset Check. Checks TOF timing resolution, systematic timing offset and coincidence-window parameters. TOF FWHM in picoseconds. absolute timing offset. coincidence window and randoms fraction..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: instruments, devices and radiation safety.
Input fields
ScannerID, CheckDate, TOF_FWHM_Picoseconds, TimingOffset_Picoseconds, CoincidenceWindow_Nanoseconds, RandomsFraction_Percent, SinglesRate_Mcps, CalibrationSource
Related utilities
API / calculation and rule-based 4
PET/CT Cross-Calibration Checker InstrumentalGeneral RPH
What it does
PET/CT and Dose-Calibrator Cross-Calibration. Compares dose-calibrator activity with activity concentration measured from the PET phantom image. decay correction between calibration and scan. expected activity concentration. recovery/cross-calibration ratio and deviation from unity..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
StudyID, PhantomType, DoseCalibratorActivityMBq, CalibrationTime, ScanStartTime, MeasuredActivityConcentrationBQ_per_ML, PhantomVolumeML, PatientWeightKg, DecayCorrectedDoseMBq
Related utilities
API / calculation and rule-based 4
Medical devices 17
Activity Prescription Checker Medical devicesAc-225Lu-177
What it does
The utility checks dose per kg body weight, renal function (GFR), cumulative dose, and minimum cycle intervals. Does not use machine learning — clinical protocol rules only (Lu-177, Ac-225). ActivityPrescriptionChecker.exe → demo mode (console output) ActivityPrescriptionChecker.exe input.csv output.json → evaluate your data
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Medical use: renal and urinary, endocrine, thyroid and NET, bone and musculoskeletal, oncology and theranostics. Workflow stages: dosimetry and therapy planning, instruments, devices and radiation safety.
Input fields
PatientID, WeightKg, HeightCm, GFR_MLMin, PrescribedActivityMBq, Radionuclide, CycleNumber, PreviousDoseMBq, LastTreatmentDate
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API / calculation and rule-based 4
Brachy Source Decay Corrector Medical devicesI-125
What it does
The utility calculates current source activity and corrected dwell time considering physical decay. Supported nuclides: Ir-192 (HDR/PDR), I-125 (LDR seeds), Cs-137. Processing: only the FIRST record in input.csv file. BrachySourceDecayCorrector.exe → demo mode
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Medical use: hepatobiliary and GI, oncology and theranostics. Workflow stages: dosimetry and therapy planning, stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
SourceID, Radionuclide, CalibrationActivity, CalibrationDate, ProcedureDate, PlannedDwellTimeSec
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DVH Comparator Medical devicesGeneral RPH
What it does
The utility compares key DVH metrics (D95, D2, V20, Mean, Max) between the current treatment plan and a reference plan (or clinical constraints). Calculates absolute and relative difference checking against specified tolerances (% and absolute units). Processing: only the FIRST record in input.csv file.
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Medical use: renal and urinary, pulmonary and ventilation, cardiovascular, oncology and theranostics. Workflow stages: dosimetry and therapy planning, instruments, devices and radiation safety.
Input fields
PatientID, StructureName, MetricType, PlanValue, RefValue, TolerancePercent, ToleranceAbsolute
Related utilities
API / calculation and rule-based 4
Dwell Time Validator Medical devicesGeneral RPH
What it does
The utility checks correctness of dwell time distribution across source positions in a channel. Controlled parameters: time sum vs plan, anomalous peaks (hot spots), index integrity. Processing: only the FIRST record in input.csv file. DwellTimeValidator.exe → demo mode
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: dosimetry and therapy planning, instruments, devices and radiation safety.
Input fields
PatientID, ChannelID, TotalPositions, TotalDwellTimeSec, MaxSingleDwellSec, MaxDwellPositionIndex, PlannedTotalTimeSec, MaxAllowedSingleSec
Related utilities
API / calculation and rule-based 4
Gamma Index Analyzer Medical devicesGeneral RPH
What it does
The utility calculates Gamma Analysis Pass Rate for RT plan verification (VMAT, IMRT, SRS). Evaluates compliance with criteria (e.g., 3%/3mm), absolute number of failed points, and low dose threshold. Processing: only the FIRST record in input.csv file. GammaIndexAnalyzer.exe → demo mode
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: dosimetry and therapy planning, instruments, devices and radiation safety.
Input fields
PatientID, PlanName, Criteria, TotalPoints, PassingPoints, ThresholdDosePercent, RequiredPassRate, MaxAllowedFailPoints
Related utilities
API / calculation and rule-based 4
MU Calculator Verifier Medical devicesGeneral RPH
What it does
The utility performs independent manual calculation of Monitor Units (MU) based on basic dosimetric parameters and compares result with Treatment Planning System (TPS) data. Uses simplified formula: MU = Dose / (Output * TPR/TMR * Wedge * Tray). Processing: only the FIRST record in input.csv file. MUCalculatorVerifier.exe → demo mode
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: dosimetry and therapy planning, instruments, devices and radiation safety.
Input fields
PatientID, FieldName, PrescribedDoseGy, DepthCm, FieldSizeX, FieldSizeY, SSD, TPR_TMR, OutputFactor, WedgeFactor
Related utilities
API / calculation and rule-based 4
PET AC Map Integrity Checker Medical devicesGeneral RPH
What it does
PET/CT Attenuation-Correction Map Integrity Check. Checks summary metrics of the CT-derived attenuation map before quantitative PET reconstruction. physically plausible HU range. truncation artifacts and body width relative to FOV. invalid voxels and metal presence as a review factor..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Medical use: bone and musculoskeletal. Workflow stages: imaging QC and quantitative interpretation, instruments, devices and radiation safety.
Input fields
StudyID, PatientID, MinHU, MaxHU, MeanAirHU, MeanBoneHU, TruncationArtifactsCount, HasMetalImplants, BodyWidthCM, ScannerFOV_CM
Related utilities
API / calculation and rule-based 4
PET Daily Detector QC Decision Checker Medical devicesGeneral RPH
What it does
Daily PET Detector QC Decision. Combines blank scan, energy calibration, TOF, source and configuration results into one operational decision. mandatory sub-check completeness. critical failure precedence over warnings. PASS, REVIEW, RECALIBRATION or DO NOT USE decision..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: product release QC, instruments, devices and radiation safety.
Input fields
ScannerID, CheckDate, BlankScanPass, DeadDetectorsCount, SinogramUniformityCV, EnergyWindowPass, PeakShiftKeV, EnergyResolutionPercent, TofCheckPass, TofResolutionPs
Related utilities
API / calculation and rule-based 4
PET Normalization File Assignment Checker Medical devicesGeneral RPH
What it does
PET Normalization File Assignment Check. Checks that the study uses an approved normalization file for the correct scanner, software version and detector configuration. ScannerID and detector-configuration match. software-version compatibility and file age. hash integrity and approval status..
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: instruments, devices and radiation safety.
Input fields
ScannerID, StudyID, AssignedNormFile, NormFileScannerID, NormFileSoftwareVersion, CurrentScannerSoftwareVersion, NormFileCreationDate, FileAgeDays, ExpectedHash, ActualHash
Related utilities
API / calculation and rule-based 4
Post Therapy Imaging QC Medical devicesGeneral RPH
What it does
The utility assesses suitability of post-therapeutic images (Planar/SPECT/PET) for quantitative dose delivery analysis. Controlled metrics: Signal-to-Background Ratio (TBR), detector uniformity, motion artifacts, noise level. Processing: only the FIRST record in input.csv file. PostTherapyImagingQC.exe → demo mode
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Medical use: pulmonary and ventilation, hepatobiliary and GI, oncology and theranostics. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, instruments, devices and radiation safety.
Input fields
PatientID, Radionuclide, ImageType, TargetToBackgroundRatio, UniformityPercent, MotionArtifactScore, NoiseLevel, ExpectedBiodistribution
Related utilities
API / calculation and rule-based 4
Shielding Calculator Medical devicesGeneral RPH
What it does
The utility calculates required thickness of shielding barrier (concrete, lead, drywall) or verifies compliance of existing shielding. Uses Transmission Factor method based on Workload (W), Distance (d), Use (U) and Occupancy (T) factors. Processing: only the FIRST record in input.csv file. ShieldingCalculator.exe → demo mode
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Medical use: bone and musculoskeletal. Workflow stages: dosimetry and therapy planning, instruments, devices and radiation safety.
Input fields
RoomID, BarrierType, WorkloadGyPerWeek, UseFactor, OccupancyFactor, DistanceM, DesignDoseSvPerWeek, ExistingThicknessCm, HVL_Cm, TVL_Cm
Related utilities
API / calculation and rule-based 4
Small Field Correction Checker Medical devicesGeneral RPH
What it does
The utility verifies correctness of applied detector correction factors ($k_{Q_{clin},Q_{msr}}^{f_{clin},f_{msr}}$) for small fields (SRS, SBRT) by comparing with reference data (IAEA TRS-483). Processing: only the FIRST record in input.csv file. SmallFieldCorrectionChecker.exe → demo mode
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Medical use: brain and CNS. Workflow stages: dosimetry and therapy planning, instruments, devices and radiation safety.
Input fields
PatientID, FieldName, FieldSizeCm, DetectorType, MeasuredOutputFactor, AppliedCorrectionFactor, ReferenceCorrectionFactor
Related utilities
API / calculation and rule-based 4
Source Strength Logger Medical devicesGeneral RPH
What it does
The utility maintains log of radiation source status (HDR, LDR, Teletherapy), cross-checking certificate data with current measurements. Controlled parameters: physical decay, cumulative hours, expiry date, activity discrepancy. Processing: only the FIRST record in input.csv file. SourceStrengthLogger.exe → demo mode
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: dosimetry and therapy planning, stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
SourceID, Radionuclide, InitialActivity, CalibrationDate, CheckDate, MeasuredActivity, CumulativeHoursUsed, MaxAllowedHours, ExpiryDate
Related utilities
API / calculation and rule-based 4
Staff Dose Tracker Medical devicesGeneral RPH
What it does
The utility analyzes individual occupational doses, comparing them with established limits (quarterly and annual) per NRB-99/2009 and ICRP recommendations. Identifies hazardous trends (consecutive dose increases) and approaching limits. Processing: only the FIRST record in input.csv file. StaffDoseTracker.exe → demo mode
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: dosimetry and therapy planning, stability, storage, decay and waste, instruments, devices and radiation safety.
Input fields
EmployeeID, FullName, Category, DoseQuarterMsv, DoseYearMsv, LimitQuarterMsv, LimitYearMsv, ConsecutiveIncreases
Related utilities
API / calculation and rule-based 4
TG43 Parameter Checker Medical devicesI-125
What it does
The utility checks physical consistency of key TG-43 formalism parameters: dose rate constant (Λ), radial dose function g(r), and anisotropy function F(r,θ). Identifies input errors, impossible physical values, and deviations from typical ranges for Ir-192, I-125, Pd-103. Processing: only the FIRST record in input.csv file.
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Workflow stages: dosimetry and therapy planning, instruments, devices and radiation safety.
Input fields
SourceModel, Radionuclide, AirKermaStrength, DoseRateConstant, GeometryFactor, RadialDoseFunction, AnisotropyFunction, RadiusCm, AngleDeg
Related utilities
API / calculation and rule-based 4
Treatment Chart Auditor Medical devicesGeneral RPH
What it does
The utility performs comprehensive check of patient's electronic or paper treatment chart before course start or during treatment. Controlled parameters: presence of all mandatory signatures, prescribed vs plan dose match, date logic, fractionation progress. Processing: only the FIRST record in input.csv file.
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Medical use: pulmonary and ventilation, hepatobiliary and GI, brain and CNS. Workflow stages: dosimetry and therapy planning, instruments, devices and radiation safety.
Input fields
PatientID, PlanName, PrescribedDoseGy, PlanDoseGy, TotalFractions, DeliveredFractions, StartDate, EndDate, PhysicianSigned, PhysicistSigned
Related utilities
API / calculation and rule-based 4
TRT Dosimetry Calculator Medical devicesGeneral RPH
What it does
The utility calculates absorbed dose in target organs and OARs based on planar/SPECT imaging data (MIRD method). Computes effective half-life (Teff), cumulated activity, and dose per cycle/GBq. Processing: only the FIRST record in input.csv file. TRTDosimetryCalculator.exe → demo mode
Why it is needed
Supports confirmation of PET scanner, gamma-camera and radiation-physics readiness before data interpretation.
Where and when to use it
daily or periodically per SOP, separate from product release but adjacent to the radiopharmaceutical workflow and result interpretation. Medical use: renal and urinary, bone and musculoskeletal, oncology and theranostics. Workflow stages: dosimetry and therapy planning, imaging QC and quantitative interpretation, stability, storage, decay and waste.
Input fields
PatientID, Radionuclide, TargetOrgan, AdministeredActivityMBq, TimePoint1Hr, Activity1MBq, TimePoint2Hr, Activity2MBq, TimePoint3Hr, Activity3MBq
Related utilities
API / calculation and rule-based 4
Organs and systems
Compact index. Select a utility name to jump to its full description in the use-case class section.
renal and urinary 59 utilities
Renography, GFR/ERPF, renal uptake, DMSA/MAG3/DTPA and bladder-related workflows.
pulmonary and ventilation 67 utilities
Lung perfusion, MAA, V/Q, aerosol, xenon ventilation, shunt and pulmonary dosimetry.
hepatobiliary and GI 130 utilities
HIDA, mebrofenin, gallbladder, gastric emptying, GI transit, bleeding and liver/spleen imaging.
cardiovascular 20 utilities
Myocardial perfusion, cardiac PET/SPECT, ventricular function, blood-pool and perfusion tracers.
brain and CNS 45 utilities
Brain perfusion, dopamine transporter, amyloid/tau, receptor imaging and neurological SPECT/PET.
endocrine, thyroid and NET 70 utilities
Radioiodine, thyroid/parathyroid, somatostatin receptor, MIBG and neuroendocrine workflows.
bone and musculoskeletal 82 utilities
Bone scintigraphy, MDP/PYP, marrow, bone-pain palliation, skeletal metastases and radiosynovectomy.
blood, cells and marrow 28 utilities
WBC/RBC/platelet labelling, blood volume, survival, blood-pool and cellular release workflows.
lymphatic, infection and inflammation 26 utilities
Sentinel node, lymphoscintigraphy, nanocolloid, labelled leukocytes, granulocyte and inflammatory imaging.
oncology and theranostics 136 utilities
Tumour imaging, PSMA/FAPI/receptor tracers, immuno-PET, targeted radionuclide therapy and radioembolization.
Isotope families
Compact index. Select a utility name to jump to its full description in the use-case class section.
Tc-99m 87 utilities
Tc-99m radiopharmaceuticals, kit preparation, generator control, SPECT workflows and calculation utilities.
short-lived PET isotopes 17 utilities
F-18, C-11, N-13, O-15 and related PET production, release and imaging workflows.
Ga/Ge 18 utilities
Ga-67, Ga-68 and Ge-68: generator, radiolabelling, PET/SPECT and purity workflows.
radioiodine 16 utilities
I-123, I-124, I-125 and I-131 for diagnostics, therapy, labelling and purity control.
beta-emitting therapy 35 utilities
Lu-177, Y-90, Ho-166, Re-188, Sm-153, Sr-89, P-32, Cu-67 and Tb-161.
alpha-emitting therapy 12 utilities
Ac-225, Ra-223, At-211, Bi-213 and Th-227: targeted alpha therapy and daughter/recoil control.
long-lived PET / immuno-PET 15 utilities
Cu-64, Zr-89, I-124, Mn-52 and Y-86 for antibodies, slow kinetics and extended imaging.
labelled cells and blood 16 utilities
In-111 and Cr-51 for labelled cells, blood volume, RBC/WBC and survival workflows.
cardiac perfusion and generator tracers 6 utilities
Rb-82/Sr-82, N-13 and Tl-201 for myocardial perfusion and generator-supported workflows.
xenon and gas tracers 29 utilities
Xe-127, Xe-129 and Xe-133 for ventilation, hyperpolarized imaging, gas QC and safety.
Workflow stages
Compact index. Select a utility name to jump to its full description in the use-case class section.
synthesis, labelling and kit reconstitution 96 utilities
Radiolabelling, synthesis, chelation, reducing agent, pH/stoichiometry and kit preparation.
product release QC 199 utilities
Assay, purity, sterility, endotoxins, pH, impurities, appearance and batch-release checks.
generators and isotope purity 122 utilities
Generator eluate, breakthrough, radionuclidic purity, isotope mix and starting radionuclides.
dosimetry and therapy planning 59 utilities
Activity planning, absorbed dose, organ dose, lung shunt, preplanning and therapy verification.
imaging QC and quantitative interpretation 167 utilities
Acquisition, uptake, clearance, perfusion, transit, ejection fraction, segmentation and quantitative imaging.
stability, storage, decay and waste 138 utilities
Kinetic stability, shelf life, decay correction, expiry, storage, trend and radioactive waste.
instruments, devices and radiation safety 67 utilities
PET/gamma-camera state, calibration, detector QC, energy window, TOF, shielding and radiation safety.
Alphabetical index
Compact index. Select a utility name to jump to its full description in the use-case class section.