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B Faddegon

Showing results (11-20 of 21) with videos related to

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Physics in Medicine and Biology|June 11, 2015
Improved efficiency in Monte Carlo simulation for passive-scattering proton therapyJ Ramos Méndez, J Perl, J Schümann, et al.
Physics in Medicine and Biology|April 27, 2018
Monte Carlo simulation of chemistry following radiolysis with TOPAS-nBioJ Ramos-Méndez, J Perl, J Schuemann, et al.
Medical Physics|May 19, 2017
SU-E-T-500: Pencil-Beam versus Monte Carlo Based Dose Calculation for Proton Therapy Patients with Complex Geometries. Clinical Use of the TOPAS Monte Carlo SystemJ Schuemann, J Shin, J Perl, et al.
Medical Physics|December 11, 2013
Experimental validation of the TOPAS Monte Carlo system for passive scattering proton therapyM Testa, J Schümann, H-M Lu, et al.
Physics in Medicine and Biology|April 18, 2020
Monte Carlo track-structure for the radionuclide Copper-64: characterization of S-values, nanodosimetry and quantification of direct damage to DNAJ Carrasco-Hernández, J Ramos-Méndez, B Faddegon, et al.
Radiation Research|January 5, 2019
TOPAS-nBio: An Extension to the TOPAS Simulation Toolkit for Cellular and Sub-cellular RadiobiologyJ Schuemann, A L McNamara, J Ramos-Méndez, et al.
Physics in Medicine and Biology|November 17, 2021
DNA damage modeled with Geant4-DNA: effects of plasmid DNA conformation and experimental conditionsN D-Kondo, E Moreno-Barbosa, V Štěphán, et al.
Medical Physics|August 8, 2001
Description and dosimetric verification of the PEREGRINE Monte Carlo dose calculation system for photon beams incident on a water phantomC L Hartmann Siantar, R S Walling, T P Daly, et al.
Physics in Medicine and Biology|August 19, 2021
TOPAS-nBio validation for simulating water radiolysis and DNA damage under low-LET irradiationJ Ramos-Méndez, J A LaVerne, N Domínguez-Kondo, et al.
Medical Physics|May 12, 2020
Report on G4-Med, a Geant4 benchmarking system for medical physics applications developed by the Geant4 Medical Simulation Benchmarking GroupP Arce, D Bolst, M-C Bordage, et al.
Pageof 3

Showing results (11-20 of 21) with videos related to

Sort By:
Pageof 3
Physics in Medicine and Biology|June 11, 2015
Improved efficiency in Monte Carlo simulation for passive-scattering proton therapyJ Ramos Méndez, J Perl, J Schümann, et al.
Physics in Medicine and Biology|April 27, 2018
Monte Carlo simulation of chemistry following radiolysis with TOPAS-nBioJ Ramos-Méndez, J Perl, J Schuemann, et al.
Medical Physics|May 19, 2017
SU-E-T-500: Pencil-Beam versus Monte Carlo Based Dose Calculation for Proton Therapy Patients with Complex Geometries. Clinical Use of the TOPAS Monte Carlo SystemJ Schuemann, J Shin, J Perl, et al.
Medical Physics|December 11, 2013
Experimental validation of the TOPAS Monte Carlo system for passive scattering proton therapyM Testa, J Schümann, H-M Lu, et al.
Physics in Medicine and Biology|April 18, 2020
Monte Carlo track-structure for the radionuclide Copper-64: characterization of S-values, nanodosimetry and quantification of direct damage to DNAJ Carrasco-Hernández, J Ramos-Méndez, B Faddegon, et al.
Radiation Research|January 5, 2019
TOPAS-nBio: An Extension to the TOPAS Simulation Toolkit for Cellular and Sub-cellular RadiobiologyJ Schuemann, A L McNamara, J Ramos-Méndez, et al.
Physics in Medicine and Biology|November 17, 2021
DNA damage modeled with Geant4-DNA: effects of plasmid DNA conformation and experimental conditionsN D-Kondo, E Moreno-Barbosa, V Štěphán, et al.
Medical Physics|August 8, 2001
Description and dosimetric verification of the PEREGRINE Monte Carlo dose calculation system for photon beams incident on a water phantomC L Hartmann Siantar, R S Walling, T P Daly, et al.
Physics in Medicine and Biology|August 19, 2021
TOPAS-nBio validation for simulating water radiolysis and DNA damage under low-LET irradiationJ Ramos-Méndez, J A LaVerne, N Domínguez-Kondo, et al.
Medical Physics|May 12, 2020
Report on G4-Med, a Geant4 benchmarking system for medical physics applications developed by the Geant4 Medical Simulation Benchmarking GroupP Arce, D Bolst, M-C Bordage, et al.
Pageof 3