International audienceMonte Carlo simulations are widely used to calculate secondary neutron doses in proton therapy. When using the passive scattering technique, a small variation in the tumor size or location requires a full adjustment of the beamline configuration. This work thus focuses on modeling all possible beamline elements of the local facility with the MCNPX code while covering the entire clinical range of proton beam energies. This paper documents the experimental validation of realistic beamline configurations dedicated to intracranial tumor treatments, with different sources and beamline elements. Simulations were compared against measurements and treatment planning system (TPS) data considering percentage depth dose distribut...
International audienceMonte Carlo calculations are increasingly used to assess stray radiation dose ...
International audienceA Monte Carlo modeling tool was applied at the Institut-Curie Centre de Proton...
International audienceA Monte Carlo modeling tool was applied at the Institut-Curie Centre de Proton...
International audienceMonte Carlo simulations are widely used to calculate secondary neutron doses i...
International audienceMonte Carlo simulations are widely used to calculate secondary neutron doses i...
Monte Carlo simulations are widely used to calculate secondary neutron doses in proton the...
Monte Carlo simulations are widely used to calculate secondary neutron doses in proton the...
Monte Carlo simulations are widely used to calculate secondary neutron doses in proton the...
International audienceA radiation transport code based on a Monte Carlo tool is used to simulate a p...
International audienceA radiation transport code based on a Monte Carlo tool is used to simulate a p...
International audienceA radiation transport code based on a Monte Carlo tool is used to simulate a p...
A radiation transport code based on a Monte Carlo tool is used to simulate a proton therap...
A radiation transport code based on a Monte Carlo tool is used to simulate a proton therap...
A radiation transport code based on a Monte Carlo tool is used to simulate a proton therap...
International audienceMonte Carlo calculations are increasingly used to assess stray radiation dose ...
International audienceMonte Carlo calculations are increasingly used to assess stray radiation dose ...
International audienceA Monte Carlo modeling tool was applied at the Institut-Curie Centre de Proton...
International audienceA Monte Carlo modeling tool was applied at the Institut-Curie Centre de Proton...
International audienceMonte Carlo simulations are widely used to calculate secondary neutron doses i...
International audienceMonte Carlo simulations are widely used to calculate secondary neutron doses i...
Monte Carlo simulations are widely used to calculate secondary neutron doses in proton the...
Monte Carlo simulations are widely used to calculate secondary neutron doses in proton the...
Monte Carlo simulations are widely used to calculate secondary neutron doses in proton the...
International audienceA radiation transport code based on a Monte Carlo tool is used to simulate a p...
International audienceA radiation transport code based on a Monte Carlo tool is used to simulate a p...
International audienceA radiation transport code based on a Monte Carlo tool is used to simulate a p...
A radiation transport code based on a Monte Carlo tool is used to simulate a proton therap...
A radiation transport code based on a Monte Carlo tool is used to simulate a proton therap...
A radiation transport code based on a Monte Carlo tool is used to simulate a proton therap...
International audienceMonte Carlo calculations are increasingly used to assess stray radiation dose ...
International audienceMonte Carlo calculations are increasingly used to assess stray radiation dose ...
International audienceA Monte Carlo modeling tool was applied at the Institut-Curie Centre de Proton...
International audienceA Monte Carlo modeling tool was applied at the Institut-Curie Centre de Proton...