Feasibility Study of a Proton Irradiation Facility for Radiobiological Measurements at an 18 MeV Cyclotron

A feasibility study of an experimental setup for the irradiation of biological samples at the cyclotron facility installed at the National Centre of Accelerators (Seville, Spain) is presented. This cyclotron, which counts on an external beam line for interdisciplinary research purposes, produces an...

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Main Authors: Anna Baratto-Roldán, María del Carmen Jiménez-Ramos, Maria Cristina Battaglia, Javier García-López, María Isabel Gallardo, Miguel A. Cortés-Giraldo, José M. Espino
Format: Article
Language:English
Published: MDPI AG 2018-11-01
Series:Instruments
Subjects:
Online Access:https://www.mdpi.com/2410-390X/2/4/26
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spelling doaj-dd8b615f4a8645d39ea0e394abf3327c2020-11-24T22:52:09ZengMDPI AGInstruments2410-390X2018-11-01242610.3390/instruments2040026instruments2040026Feasibility Study of a Proton Irradiation Facility for Radiobiological Measurements at an 18 MeV CyclotronAnna Baratto-Roldán0María del Carmen Jiménez-Ramos1Maria Cristina Battaglia2Javier García-López3María Isabel Gallardo4Miguel A. Cortés-Giraldo5José M. Espino6Centro Nacional de Aceleradores, 41092 Sevilla, SpainCentro Nacional de Aceleradores, 41092 Sevilla, SpainDepartment of Atomic, Molecular and Nuclear Physics, Universidad de Sevilla, 41012 Sevilla, SpainCentro Nacional de Aceleradores, 41092 Sevilla, SpainDepartment of Atomic, Molecular and Nuclear Physics, Universidad de Sevilla, 41012 Sevilla, SpainDepartment of Atomic, Molecular and Nuclear Physics, Universidad de Sevilla, 41012 Sevilla, SpainCentro Nacional de Aceleradores, 41092 Sevilla, SpainA feasibility study of an experimental setup for the irradiation of biological samples at the cyclotron facility installed at the National Centre of Accelerators (Seville, Spain) is presented. This cyclotron, which counts on an external beam line for interdisciplinary research purposes, produces an 18 MeV proton beam, which is suitable for the irradiation of mono-layer cultures for the measurement of proton cell damages and Relative Biological Effectiveness (RBE) at energies below the beam nominal value. Measurements of this kind are of interest for proton therapy, since the variation of proton RBE at the distal edge of the Bragg curve may have implications in clinical proton therapy treatments. In the following, the characteristics of the beam line and the solutions implemented for the irradiation of biological samples are described. When dealing with the irradiation of cell cultures, low beam intensities and broad homogeneous irradiation fields are required, in order to assure that all the cells receive the same dose with a suitable dose rate. At the cyclotron, these constraints have been achieved by completely defocusing the beam, intercepting the beam path with tungsten scattering foils and varying the exit-window-to-sample distance. The properties of the proton beam thus obtained have been analysed and compared with Monte Carlo simulations. The results of this comparison, as well as the experimental measurement of the lateral dose profiles expected at the position of samples are presented. Meaningful dose rates of about 2⁻3 Gy/min have been obtained. Homogeneous lateral dose profiles, with maximum deviations of 5%, have been measured at a distance of approximately 50 cm in air from the exit window, placing a tungsten scattering foil of 200 μm in the beam path.https://www.mdpi.com/2410-390X/2/4/26proton beamsbeam characterizationradiochromic filmsradiobiologydosimetryIBA cyclotron
collection DOAJ
language English
format Article
sources DOAJ
author Anna Baratto-Roldán
María del Carmen Jiménez-Ramos
Maria Cristina Battaglia
Javier García-López
María Isabel Gallardo
Miguel A. Cortés-Giraldo
José M. Espino
spellingShingle Anna Baratto-Roldán
María del Carmen Jiménez-Ramos
Maria Cristina Battaglia
Javier García-López
María Isabel Gallardo
Miguel A. Cortés-Giraldo
José M. Espino
Feasibility Study of a Proton Irradiation Facility for Radiobiological Measurements at an 18 MeV Cyclotron
Instruments
proton beams
beam characterization
radiochromic films
radiobiology
dosimetry
IBA cyclotron
author_facet Anna Baratto-Roldán
María del Carmen Jiménez-Ramos
Maria Cristina Battaglia
Javier García-López
María Isabel Gallardo
Miguel A. Cortés-Giraldo
José M. Espino
author_sort Anna Baratto-Roldán
title Feasibility Study of a Proton Irradiation Facility for Radiobiological Measurements at an 18 MeV Cyclotron
title_short Feasibility Study of a Proton Irradiation Facility for Radiobiological Measurements at an 18 MeV Cyclotron
title_full Feasibility Study of a Proton Irradiation Facility for Radiobiological Measurements at an 18 MeV Cyclotron
title_fullStr Feasibility Study of a Proton Irradiation Facility for Radiobiological Measurements at an 18 MeV Cyclotron
title_full_unstemmed Feasibility Study of a Proton Irradiation Facility for Radiobiological Measurements at an 18 MeV Cyclotron
title_sort feasibility study of a proton irradiation facility for radiobiological measurements at an 18 mev cyclotron
publisher MDPI AG
series Instruments
issn 2410-390X
publishDate 2018-11-01
description A feasibility study of an experimental setup for the irradiation of biological samples at the cyclotron facility installed at the National Centre of Accelerators (Seville, Spain) is presented. This cyclotron, which counts on an external beam line for interdisciplinary research purposes, produces an 18 MeV proton beam, which is suitable for the irradiation of mono-layer cultures for the measurement of proton cell damages and Relative Biological Effectiveness (RBE) at energies below the beam nominal value. Measurements of this kind are of interest for proton therapy, since the variation of proton RBE at the distal edge of the Bragg curve may have implications in clinical proton therapy treatments. In the following, the characteristics of the beam line and the solutions implemented for the irradiation of biological samples are described. When dealing with the irradiation of cell cultures, low beam intensities and broad homogeneous irradiation fields are required, in order to assure that all the cells receive the same dose with a suitable dose rate. At the cyclotron, these constraints have been achieved by completely defocusing the beam, intercepting the beam path with tungsten scattering foils and varying the exit-window-to-sample distance. The properties of the proton beam thus obtained have been analysed and compared with Monte Carlo simulations. The results of this comparison, as well as the experimental measurement of the lateral dose profiles expected at the position of samples are presented. Meaningful dose rates of about 2⁻3 Gy/min have been obtained. Homogeneous lateral dose profiles, with maximum deviations of 5%, have been measured at a distance of approximately 50 cm in air from the exit window, placing a tungsten scattering foil of 200 μm in the beam path.
topic proton beams
beam characterization
radiochromic films
radiobiology
dosimetry
IBA cyclotron
url https://www.mdpi.com/2410-390X/2/4/26
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