Purpose: This study investigates the influence of several Monte Carlo radiation transport codes and nuclear models on the simulation of secondary neutron spectra and its impact on calculating and measuring the neutron doses in proton therapy. Materials and methods: Three different multi-purpose Monte Carlo radiation transport codes (FLUKA, MCNPX, Geant4) were used together with different available nuclear models, to calculate secondary neutron energy spectra at various points inside a water tank phantom with PMMA walls using a 10 × 10 cm2 rectangular, mono-energetic proton beam (110 MeV, 150 MeV, 180 MeV, 210 MeV). Using Kerma approximation secondary neutron doses were calculated applying fluence-to-dose equivalent conversion coefficients i...
Purpose: Stray radiation exposures are of concern for patients receiving proton radiotherapy and var...
Purpose: Stray neutron radiation is of concern after radiation therapy, especially in children, beca...
Out-of-field patient doses in proton therapy are dominated by neutrons. Currently, they are not take...
International audienceMonte Carlo calculations are increasingly used to assess stray radiation dose ...
Stray neutron exposures pose a potential risk for the development of secondary cancer in patients re...
Purpose: To evaluate differences in nuclear physics models of MCNPX for uncertainties in 1) the dosi...
International audiencePurpose This study focuses on the configuration and validation of an analytica...
Radiation therapy is an important treatment modality within cancer treatment, with the aim to delive...
Purpose: To simulate secondary neutron radiation fields that had been measured at different relative...
Proton radiotherapy patients receive unwanted stray neutron radiation generated in the treatment app...
Exposure to stray neutrons increases the risk of second cancer development after proton therapy. Pre...
Stray radiation exposures are of concern for patients receiving proton radiotherapy and vary strongl...
Proton therapy uses proton beams with energies of 70 – 230 MeV to treat cancerous tumours very effec...
Proton therapy has the physical advantage of a Bragg peak that can provide a better dose distributio...
Stray neutrons generated in passively scattered proton therapy are of concern because they increase ...
Purpose: Stray radiation exposures are of concern for patients receiving proton radiotherapy and var...
Purpose: Stray neutron radiation is of concern after radiation therapy, especially in children, beca...
Out-of-field patient doses in proton therapy are dominated by neutrons. Currently, they are not take...
International audienceMonte Carlo calculations are increasingly used to assess stray radiation dose ...
Stray neutron exposures pose a potential risk for the development of secondary cancer in patients re...
Purpose: To evaluate differences in nuclear physics models of MCNPX for uncertainties in 1) the dosi...
International audiencePurpose This study focuses on the configuration and validation of an analytica...
Radiation therapy is an important treatment modality within cancer treatment, with the aim to delive...
Purpose: To simulate secondary neutron radiation fields that had been measured at different relative...
Proton radiotherapy patients receive unwanted stray neutron radiation generated in the treatment app...
Exposure to stray neutrons increases the risk of second cancer development after proton therapy. Pre...
Stray radiation exposures are of concern for patients receiving proton radiotherapy and vary strongl...
Proton therapy uses proton beams with energies of 70 – 230 MeV to treat cancerous tumours very effec...
Proton therapy has the physical advantage of a Bragg peak that can provide a better dose distributio...
Stray neutrons generated in passively scattered proton therapy are of concern because they increase ...
Purpose: Stray radiation exposures are of concern for patients receiving proton radiotherapy and var...
Purpose: Stray neutron radiation is of concern after radiation therapy, especially in children, beca...
Out-of-field patient doses in proton therapy are dominated by neutrons. Currently, they are not take...