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MCNPX simulation of proton dose distribution in homogeneous and CT phantoms

Authors :
Chuan-Jong Tung
Chung-Chi Lee
Y.J. Lee
H.W. Cheng
Tsi-Chian Chao
Source :
Radiation Physics and Chemistry. 95:302-304
Publication Year :
2014
Publisher :
Elsevier BV, 2014.

Abstract

A dose simulation system was constructed based on the MCNPX Monte Carlo package to simulate proton dose distribution in homogeneous and CT phantoms. Conversion from Hounsfield unit of a patient CT image set to material information necessary for Monte Carlo simulation is based on Schneider's approach. In order to validate this simulation system, inter-comparison of depth dose distributions among those obtained from the MCNPX, GEANT4 and FLUKA codes for a 160 MeV monoenergetic proton beam incident normally on the surface of a homogeneous water phantom was performed. For dose validation within the CT phantom, direct comparison with measurement is infeasible. Instead, this study took the approach to indirectly compare the 50% ranges (R50%) along the central axis by our system to the NIST CSDA ranges for beams with 160 and 115 MeV energies. Comparison result within the homogeneous phantom shows good agreement. Differences of simulated R50% among the three codes are less than 1 mm. For results within the CT phantom, the MCNPX simulated water equivalent Req,50% are compatible with the CSDA water equivalent ranges from the NIST database with differences of 0.7 and 4.1 mm for 160 and 115 MeV beams, respectively.

Details

ISSN :
0969806X
Volume :
95
Database :
OpenAIRE
Journal :
Radiation Physics and Chemistry
Accession number :
edsair.doi...........01c3fb086f5332202886afa06c8cdcb0
Full Text :
https://doi.org/10.1016/j.radphyschem.2012.12.046