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A neutron track etch detector for electron linear accelerators in radiotherapy

BACKGROUND: Electron linear accelerators in medical radiotherapy have replaced cobalt and caesium sources of radiation. However, medical accelerators with photon energies over 10 MeV generate undesired fast neutron contamination in a therapeutic X-ray photon beam. Photons with energies above 10 MeV...

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Autores principales: Vukovic, Branko, Faj, Dario, Poje, Marina, Varga, Maja, Radolic, Vanja, Miklavcic, Igor, Ivkovic, Ana, Planinic, Josip
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Versita, Warsaw 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3423670/
https://www.ncbi.nlm.nih.gov/pubmed/22933893
http://dx.doi.org/10.2478/v10019-010-0003-2
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author Vukovic, Branko
Faj, Dario
Poje, Marina
Varga, Maja
Radolic, Vanja
Miklavcic, Igor
Ivkovic, Ana
Planinic, Josip
author_facet Vukovic, Branko
Faj, Dario
Poje, Marina
Varga, Maja
Radolic, Vanja
Miklavcic, Igor
Ivkovic, Ana
Planinic, Josip
author_sort Vukovic, Branko
collection PubMed
description BACKGROUND: Electron linear accelerators in medical radiotherapy have replaced cobalt and caesium sources of radiation. However, medical accelerators with photon energies over 10 MeV generate undesired fast neutron contamination in a therapeutic X-ray photon beam. Photons with energies above 10 MeV can interact with the atomic nucleus of a high-Z material, of which the target and the head of an accelerator consist, and lead to the neutron ejection. RESULTS AND CONCLUSIONS. Our neutron dosimeter, composed of the LR-115 track etch detector and boron foil BN-1 converter, was calibrated on thermal neutrons generated in the nuclear reactor of the Josef Stefan Institute (Slovenia), and applied to dosimetry of undesirable neutrons in photon radiotherapy by the linear accelerator 15 MV Siemens Mevatron. Having considered a high dependence of a cross-section between neutron and boron on neutron energy, and broad neutron spectrum in a photon beam, as well as outside the entrance door to maze of the Mevatron, we developed a method for determining the effective neutron detector response. A neutron dose rate in the photon beam was measured to be 1.96 Sv/h. Outside the Mevatron room the neutron dose rate was 0.62 μSv/h. PACS: 87.52. Ga; 87.53.St; 29.40.Wk.
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spelling pubmed-34236702012-08-29 A neutron track etch detector for electron linear accelerators in radiotherapy Vukovic, Branko Faj, Dario Poje, Marina Varga, Maja Radolic, Vanja Miklavcic, Igor Ivkovic, Ana Planinic, Josip Radiol Oncol Research Article BACKGROUND: Electron linear accelerators in medical radiotherapy have replaced cobalt and caesium sources of radiation. However, medical accelerators with photon energies over 10 MeV generate undesired fast neutron contamination in a therapeutic X-ray photon beam. Photons with energies above 10 MeV can interact with the atomic nucleus of a high-Z material, of which the target and the head of an accelerator consist, and lead to the neutron ejection. RESULTS AND CONCLUSIONS. Our neutron dosimeter, composed of the LR-115 track etch detector and boron foil BN-1 converter, was calibrated on thermal neutrons generated in the nuclear reactor of the Josef Stefan Institute (Slovenia), and applied to dosimetry of undesirable neutrons in photon radiotherapy by the linear accelerator 15 MV Siemens Mevatron. Having considered a high dependence of a cross-section between neutron and boron on neutron energy, and broad neutron spectrum in a photon beam, as well as outside the entrance door to maze of the Mevatron, we developed a method for determining the effective neutron detector response. A neutron dose rate in the photon beam was measured to be 1.96 Sv/h. Outside the Mevatron room the neutron dose rate was 0.62 μSv/h. PACS: 87.52. Ga; 87.53.St; 29.40.Wk. Versita, Warsaw 2010-03-18 2010-03 /pmc/articles/PMC3423670/ /pubmed/22933893 http://dx.doi.org/10.2478/v10019-010-0003-2 Text en Copyright © by Association of Radiology & Oncology http://creativecommons.org/licenses/by/3.0 This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Research Article
Vukovic, Branko
Faj, Dario
Poje, Marina
Varga, Maja
Radolic, Vanja
Miklavcic, Igor
Ivkovic, Ana
Planinic, Josip
A neutron track etch detector for electron linear accelerators in radiotherapy
title A neutron track etch detector for electron linear accelerators in radiotherapy
title_full A neutron track etch detector for electron linear accelerators in radiotherapy
title_fullStr A neutron track etch detector for electron linear accelerators in radiotherapy
title_full_unstemmed A neutron track etch detector for electron linear accelerators in radiotherapy
title_short A neutron track etch detector for electron linear accelerators in radiotherapy
title_sort neutron track etch detector for electron linear accelerators in radiotherapy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3423670/
https://www.ncbi.nlm.nih.gov/pubmed/22933893
http://dx.doi.org/10.2478/v10019-010-0003-2
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