A Geant4 Based Simulation Platform of the HollandPTC R&D Proton Beamline for Radiobiological Studies
C. F. Groenendijk, M. Rovituso, D. Lathouwers, J. M. C. Brown

TL;DR
This paper presents a Geant4-based simulation platform for the HollandPTC proton beamline, enabling accurate modeling of beam properties for radiobiological research and clinical applications.
Contribution
It introduces a novel non-symmetrical Gaussian pencil beam model that simplifies beam simulation using only the proton energy as input.
Findings
Achieved ±5% accuracy in modeling beam envelope and depth-dose profiles.
Successfully modeled both pencil beam and passively scattered configurations.
Validated the platform with multiple experimental datasets.
Abstract
A Geant4 based simulation platform of the Holland Proton Therapy Centre (HollandPTC, Netherlands) R&D beamline (G4HPTC-R&D) was developed to enable the planning, optimisation and advanced dosimetry for radiobiological studies. It implemented a six parameter non-symmetrical Gaussian pencil beam surrogate model to simulate the R&D beamline in both a pencil beam and passively scattered field configuration. Three different experimental proton datasets (70 MeV, 150 MeV, and 240 MeV) of the pencil beam envelope evolution in free air and depth-dose profiles in water were used to develop a set of individual parameter surrogate functions to enable the modelling of the non-symmetrical Gaussian pencil beam properties with only the ProBeam isochronous cyclotron mean extraction proton energy as input. This refined beam model was then benchmarked with respect to three independent experimental…
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Taxonomy
TopicsRadiation Therapy and Dosimetry · Advanced Radiotherapy Techniques · Radiation Effects in Electronics
