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Spread‐out Bragg peak and monitor units calculation with the Monte Carlo Code MCNPX
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Citations
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References
2007
Year
EngineeringNuclear PhysicsMeasurementSpread‐out Bragg PeakMcnpx CodeQuality Control MeasurementsCalibrationBrachytherapyRadiation Therapy PlanningInstrumentationRadiation OncologyNuclear MedicineUnits CalculationRadiologyHealth SciencesRadiation DetectionMonte-carlo ModellingPhysicsMedical ImagingMonte CarloComputer EngineeringProton TherapyMonte Carlo SamplingProton Beam LineDosimetryMonte Carlo MethodRadiation DoseDetector Physic
The aim of this work was to study the dosimetric potential of the Monte Carlo code MCNPX applied to the protontherapy field. For series of clinical configurations a comparison between simulated and experimental data was carried out, using the proton beam line of the MEDICYC isochronous cyclotron installed in the Centre Antoine Lacassagne in Nice. The dosimetric quantities tested were depth-dose distributions, output factors, and monitor units. For each parameter, the simulation reproduced accurately the experiment, which attests the quality of the choices made both in the geometrical description and in the physics parameters for beam definition. These encouraging results enable us today to consider a simplification of quality control measurements in the future. Monitor Units calculation is planned to be carried out with preestablished Monte Carlo simulation data. The measurement, which was until now our main patient dose calibration system, will be progressively replaced by computation based on the MCNPX code. This determination of Monitor Units will be controlled by an independent semi-empirical calculation.
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