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Beam parameters optimization and characterization for a TUrning LInac for Protontherapy

TULIP (TUrning LInac for Protontherapy) is a novel compact accelerator system for protontherapy mounted on a rotating gantry (Amaldi et al., 2013, 2010, 2009). Its high-energy Linac has the unique property of being able to modulate the beam energy from one pulse to the next, in only a couple of mill...

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Autores principales: Cuccagna, Caterina, Bencini, Vittorio, Benedetti, Stefano, Bergesio, Daniele, Carrio Perez, Pedro, Felcini, Enrico, Garonna, Adriano, Kozłowska, Wioletta S, Varasteh Anvar, Mohammad, Vlachoudis, Vasilis, Amaldi, Ugo
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.ejmp.2018.08.019
http://cds.cern.ch/record/2708126
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author Cuccagna, Caterina
Bencini, Vittorio
Benedetti, Stefano
Bergesio, Daniele
Carrio Perez, Pedro
Felcini, Enrico
Garonna, Adriano
Kozłowska, Wioletta S
Varasteh Anvar, Mohammad
Vlachoudis, Vasilis
Amaldi, Ugo
author_facet Cuccagna, Caterina
Bencini, Vittorio
Benedetti, Stefano
Bergesio, Daniele
Carrio Perez, Pedro
Felcini, Enrico
Garonna, Adriano
Kozłowska, Wioletta S
Varasteh Anvar, Mohammad
Vlachoudis, Vasilis
Amaldi, Ugo
author_sort Cuccagna, Caterina
collection CERN
description TULIP (TUrning LInac for Protontherapy) is a novel compact accelerator system for protontherapy mounted on a rotating gantry (Amaldi et al., 2013, 2010, 2009). Its high-energy Linac has the unique property of being able to modulate the beam energy from one pulse to the next, in only a couple of milliseconds. The main purpose of this study is to optimize the properties of the beam exiting the Linac to make them compatible to medical therapy and to characterize their medical physics properties for later implementation in a Treatment Planning System. For this purpose, multi-particle tracking and Monte Carlo (MC) simulations are used to follow the particles through their path up to the treatment isocenter, following the so-called phase-space method. The data compiled includes particle fluences in air and depth-dose curves and provides the basis for a specific model of the TULIP beam.
id oai-inspirehep.net-1777305
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling oai-inspirehep.net-17773052020-02-07T14:26:06Zdoi:10.1016/j.ejmp.2018.08.019http://cds.cern.ch/record/2708126engCuccagna, CaterinaBencini, VittorioBenedetti, StefanoBergesio, DanieleCarrio Perez, PedroFelcini, EnricoGaronna, AdrianoKozłowska, Wioletta SVarasteh Anvar, MohammadVlachoudis, VasilisAmaldi, UgoBeam parameters optimization and characterization for a TUrning LInac for ProtontherapyAccelerators and Storage RingsTULIP (TUrning LInac for Protontherapy) is a novel compact accelerator system for protontherapy mounted on a rotating gantry (Amaldi et al., 2013, 2010, 2009). Its high-energy Linac has the unique property of being able to modulate the beam energy from one pulse to the next, in only a couple of milliseconds. The main purpose of this study is to optimize the properties of the beam exiting the Linac to make them compatible to medical therapy and to characterize their medical physics properties for later implementation in a Treatment Planning System. For this purpose, multi-particle tracking and Monte Carlo (MC) simulations are used to follow the particles through their path up to the treatment isocenter, following the so-called phase-space method. The data compiled includes particle fluences in air and depth-dose curves and provides the basis for a specific model of the TULIP beam.oai:inspirehep.net:17773052018
spellingShingle Accelerators and Storage Rings
Cuccagna, Caterina
Bencini, Vittorio
Benedetti, Stefano
Bergesio, Daniele
Carrio Perez, Pedro
Felcini, Enrico
Garonna, Adriano
Kozłowska, Wioletta S
Varasteh Anvar, Mohammad
Vlachoudis, Vasilis
Amaldi, Ugo
Beam parameters optimization and characterization for a TUrning LInac for Protontherapy
title Beam parameters optimization and characterization for a TUrning LInac for Protontherapy
title_full Beam parameters optimization and characterization for a TUrning LInac for Protontherapy
title_fullStr Beam parameters optimization and characterization for a TUrning LInac for Protontherapy
title_full_unstemmed Beam parameters optimization and characterization for a TUrning LInac for Protontherapy
title_short Beam parameters optimization and characterization for a TUrning LInac for Protontherapy
title_sort beam parameters optimization and characterization for a turning linac for protontherapy
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1016/j.ejmp.2018.08.019
http://cds.cern.ch/record/2708126
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