DocumentCode :
1352218
Title :
Physics-Related Epistemic Uncertainties in Proton Depth Dose Simulation
Author :
Pia, Maria Grazia ; Begalli, Marcia ; Lechner, Anton ; Quintieri, Lina ; Saracco, Paolo
Author_Institution :
Sezione di Genova, INFN, Genova, Italy
Volume :
57
Issue :
5
fYear :
2010
Firstpage :
2805
Lastpage :
2830
Abstract :
A set of physics models and parameters pertaining to the simulation of proton energy deposition in matter are evaluated in the energy range up to approximately 65 MeV, based on their implementations in the Geant4 toolkit. The analysis assesses several features of the models and the impact of their associated epistemic uncertainties, i.e., uncertainties due to lack of knowledge, on the simulation results. Possible systematic effects deriving from uncertainties of this kind are highlighted; their relevance in relation to the application environment and different experimental requirements are discussed, with emphasis on the simulation of radiotherapy set-ups. By documenting quantitatively the features of a wide set of simulation models and the related intrinsic uncertainties affecting the simulation results, this analysis provides guidance regarding the use of the concerned simulation tools in experimental applications; it also provides indications for further experimental measurements addressing the sources of such uncertainties.
Keywords :
Monte Carlo methods; dosimetry; proton effects; radiation therapy; Geant4 toolkit; epistemic uncertainties; physics models; proton depth dose simulation; proton energy deposition simulation; radiotherapy set-up simulation; simulation models; systematic effects; Analytical models; Data models; Monte Carlo methods; Protons; Scattering; Uncertainty; Geant4; Monte Carlo; hadron therapy; simulation;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2010.2060355
Filename :
5603460
Link To Document :
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