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Hugo Bouchard

Showing results (41-50 of 85) with videos related to

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Physics in Medicine and Biology|September 6, 2018
The impact of dual- and multi-energy CT on proton pencil beam range uncertainties: a Monte Carlo studyArthur Lalonde, Mikaël Simard, Charlotte Remy, et al.
Physics in Medicine and Biology|July 13, 2018
Optimized I-values for use with the Bragg additivity rule and their impact on proton stopping power and range uncertaintyEsther Bär, Pedro Andreo, Arthur Lalonde, et al.
Medical Physics|October 3, 2015
Detector dose response in megavoltage small photon beams. II. Pencil beam perturbation effectsHugo Bouchard, Yuji Kamio, Hugo Palmans, et al.
Physics in Medicine and Biology|July 17, 2020
Small-cavity chamber dose response in megavoltage photon beams coupled to magnetic fieldsYunuen Cervantes, Ilias Billas, David Shipley, et al.
Medical Physics|January 7, 2014
A Fano cavity test for Monte Carlo proton transport algorithmsEdmond Sterpin, Jefferson Sorriaux, Kevin Souris, et al.
Physics in Medicine and Biology|October 26, 2021
Monte Carlo calculation of detector perturbation and quality correction factors in a 1.5 T magnetic resonance guided radiation therapy small photon beamsYunuen Cervantes, Jasmine Duchaine, Ilias Billas, et al.
Physics in Medicine and Biology|April 19, 2019
The potential of photon-counting CT for quantitative contrast-enhanced imaging in radiotherapyMikaël Simard, Andréanne Lapointe, Arthur Lalonde, et al.
Medical Physics|October 3, 2015
Detector dose response in megavoltage small photon beams. I. Theoretical conceptsHugo Bouchard, Jan Seuntjens, Simon Duane, et al.
Medical Physics|November 11, 2018
The influence of nuclear interactions on ionization chamber perturbation factors in proton beams: FLUKA simulations supported by a Fano testAna Lourenço, Hugo Bouchard, Sebastian Galer, et al.
Medical Physics|March 16, 2017
The potential of dual-energy CT to reduce proton beam range uncertaintiesEsther Bär, Arthur Lalonde, Gary Royle, et al.
Pageof 9

Showing results (41-50 of 85) with videos related to

Sort By:
Pageof 9
Physics in Medicine and Biology|September 6, 2018
The impact of dual- and multi-energy CT on proton pencil beam range uncertainties: a Monte Carlo studyArthur Lalonde, Mikaël Simard, Charlotte Remy, et al.
Physics in Medicine and Biology|July 13, 2018
Optimized I-values for use with the Bragg additivity rule and their impact on proton stopping power and range uncertaintyEsther Bär, Pedro Andreo, Arthur Lalonde, et al.
Medical Physics|October 3, 2015
Detector dose response in megavoltage small photon beams. II. Pencil beam perturbation effectsHugo Bouchard, Yuji Kamio, Hugo Palmans, et al.
Physics in Medicine and Biology|July 17, 2020
Small-cavity chamber dose response in megavoltage photon beams coupled to magnetic fieldsYunuen Cervantes, Ilias Billas, David Shipley, et al.
Medical Physics|January 7, 2014
A Fano cavity test for Monte Carlo proton transport algorithmsEdmond Sterpin, Jefferson Sorriaux, Kevin Souris, et al.
Physics in Medicine and Biology|October 26, 2021
Monte Carlo calculation of detector perturbation and quality correction factors in a 1.5 T magnetic resonance guided radiation therapy small photon beamsYunuen Cervantes, Jasmine Duchaine, Ilias Billas, et al.
Physics in Medicine and Biology|April 19, 2019
The potential of photon-counting CT for quantitative contrast-enhanced imaging in radiotherapyMikaël Simard, Andréanne Lapointe, Arthur Lalonde, et al.
Medical Physics|October 3, 2015
Detector dose response in megavoltage small photon beams. I. Theoretical conceptsHugo Bouchard, Jan Seuntjens, Simon Duane, et al.
Medical Physics|November 11, 2018
The influence of nuclear interactions on ionization chamber perturbation factors in proton beams: FLUKA simulations supported by a Fano testAna Lourenço, Hugo Bouchard, Sebastian Galer, et al.
Medical Physics|March 16, 2017
The potential of dual-energy CT to reduce proton beam range uncertaintiesEsther Bär, Arthur Lalonde, Gary Royle, et al.
Pageof 9