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Output correction factors for small static fields in megavoltage photon beams for seven ionization chambers in two orientations — perpendicular and parallel

PURPOSE: The goal of the present work was to provide a large set of detector‐specific output correction factors for seven small volume ionization chambers on two linear accelerators in four megavoltage photon beams utilizing perpendicular and parallel orientation of ionization chambers in the beam f...

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Autores principales: Casar, Božidar, Gershkevitsh, Eduard, Mendez, Ignasi, Jurković, Slaven, Saiful Huq, M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7003763/
https://www.ncbi.nlm.nih.gov/pubmed/31677278
http://dx.doi.org/10.1002/mp.13894
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author Casar, Božidar
Gershkevitsh, Eduard
Mendez, Ignasi
Jurković, Slaven
Saiful Huq, M.
author_facet Casar, Božidar
Gershkevitsh, Eduard
Mendez, Ignasi
Jurković, Slaven
Saiful Huq, M.
author_sort Casar, Božidar
collection PubMed
description PURPOSE: The goal of the present work was to provide a large set of detector‐specific output correction factors for seven small volume ionization chambers on two linear accelerators in four megavoltage photon beams utilizing perpendicular and parallel orientation of ionization chambers in the beam for nominal field sizes ranging from 0.5 cm(2) × 0.5 cm(2) to 10 cm(2 )× 10 cm(2). The present study is the second part of an extensive research conducted by our group. METHODS: Output correction factors [Formula: see text] were experimentally determined on two linacs, Elekta Versa HD and Varian TrueBeam for 6 and 10 MV beams with and without flattening filter for nine square fields ranging from 0.5 cm(2 )× 0.5 cm(2 )to 10 cm(2 )× 10 cm(2), for seven mini and micro ionization chambers, IBA CC04, IBA Razor, PTW 31016 3D PinPoint, PTW 31021 3D Semiflex, PTW 31022 3D PinPoint, PTW 31023 PinPoint, and SI Exradin A16. An Exradin W1 plastic scintillator and EBT3 radiochromic films were used as the reference detectors. RESULTS: For all ionization chambers, values of output correction factors [Formula: see text] were lower for parallel orientation compared to those obtained in the perpendicular orientation. Five ionization chambers from our study set, IBA Razor, PTW 31016 3D PinPoint, PTW 31022 3D PinPoint, PTW 31023 PinPoint, and SI Exradin A16, fulfill the requirement recommended in the TRS‐483 Code of Practice, that is, [Formula: see text] , down to the field size 0.8 cm(2 )× 0.8 cm(2), when they are positioned in parallel orientation; two of the ionization chambers, IBA Razor and PTW 31023 PinPoint, satisfy this condition down to the field size of 0.5 cm(2) × 0.5 cm(2). CONCLUSIONS: The present paper provides experimental results of detector‐specific output correction factors for seven small volume ionization chambers. Output correction factors were determined in 6 and 10 MV photon beams with and without flattening filter down to the square field size of 0.5 cm(2) × 0.5 cm(2) for two orientations of ionization chambers — perpendicular and parallel. Our main finding is that output correction factors are smaller if they are determined in a parallel orientation compared to those obtained in a perpendicular orientation for all ionization chambers regardless of the photon beam energy, filtration, or linear accelerator being used. Based on our findings, we recommend using ionization chambers in parallel orientation, to minimize corrections in the experimental determination of field output factors. Latter holds even for field sizes below 1.0 cm(2) × 1.0 cm(2), whenever necessary corrections remain within 5%, which was the case for several ionization chambers from our set. TRS‐483 recommended perpendicular orientation of ionization chambers for the determination of field output factors. The present study presents results for both perpendicular and parallel orientation of ionization chambers. When validated by other researchers, the present results for parallel orientation can be considered as a complementary dataset to those given in TRS‐483.
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spelling pubmed-70037632020-02-10 Output correction factors for small static fields in megavoltage photon beams for seven ionization chambers in two orientations — perpendicular and parallel Casar, Božidar Gershkevitsh, Eduard Mendez, Ignasi Jurković, Slaven Saiful Huq, M. Med Phys COMPUTATIONAL AND EXPERIMENTAL DOSIMETRY PURPOSE: The goal of the present work was to provide a large set of detector‐specific output correction factors for seven small volume ionization chambers on two linear accelerators in four megavoltage photon beams utilizing perpendicular and parallel orientation of ionization chambers in the beam for nominal field sizes ranging from 0.5 cm(2) × 0.5 cm(2) to 10 cm(2 )× 10 cm(2). The present study is the second part of an extensive research conducted by our group. METHODS: Output correction factors [Formula: see text] were experimentally determined on two linacs, Elekta Versa HD and Varian TrueBeam for 6 and 10 MV beams with and without flattening filter for nine square fields ranging from 0.5 cm(2 )× 0.5 cm(2 )to 10 cm(2 )× 10 cm(2), for seven mini and micro ionization chambers, IBA CC04, IBA Razor, PTW 31016 3D PinPoint, PTW 31021 3D Semiflex, PTW 31022 3D PinPoint, PTW 31023 PinPoint, and SI Exradin A16. An Exradin W1 plastic scintillator and EBT3 radiochromic films were used as the reference detectors. RESULTS: For all ionization chambers, values of output correction factors [Formula: see text] were lower for parallel orientation compared to those obtained in the perpendicular orientation. Five ionization chambers from our study set, IBA Razor, PTW 31016 3D PinPoint, PTW 31022 3D PinPoint, PTW 31023 PinPoint, and SI Exradin A16, fulfill the requirement recommended in the TRS‐483 Code of Practice, that is, [Formula: see text] , down to the field size 0.8 cm(2 )× 0.8 cm(2), when they are positioned in parallel orientation; two of the ionization chambers, IBA Razor and PTW 31023 PinPoint, satisfy this condition down to the field size of 0.5 cm(2) × 0.5 cm(2). CONCLUSIONS: The present paper provides experimental results of detector‐specific output correction factors for seven small volume ionization chambers. Output correction factors were determined in 6 and 10 MV photon beams with and without flattening filter down to the square field size of 0.5 cm(2) × 0.5 cm(2) for two orientations of ionization chambers — perpendicular and parallel. Our main finding is that output correction factors are smaller if they are determined in a parallel orientation compared to those obtained in a perpendicular orientation for all ionization chambers regardless of the photon beam energy, filtration, or linear accelerator being used. Based on our findings, we recommend using ionization chambers in parallel orientation, to minimize corrections in the experimental determination of field output factors. Latter holds even for field sizes below 1.0 cm(2) × 1.0 cm(2), whenever necessary corrections remain within 5%, which was the case for several ionization chambers from our set. TRS‐483 recommended perpendicular orientation of ionization chambers for the determination of field output factors. The present study presents results for both perpendicular and parallel orientation of ionization chambers. When validated by other researchers, the present results for parallel orientation can be considered as a complementary dataset to those given in TRS‐483. John Wiley and Sons Inc. 2019-11-25 2020-01 /pmc/articles/PMC7003763/ /pubmed/31677278 http://dx.doi.org/10.1002/mp.13894 Text en © 2019 The Authors. Medical Physics published by Wiley Periodicals, Inc. on behalf of American Association of Physicists in Medicine. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle COMPUTATIONAL AND EXPERIMENTAL DOSIMETRY
Casar, Božidar
Gershkevitsh, Eduard
Mendez, Ignasi
Jurković, Slaven
Saiful Huq, M.
Output correction factors for small static fields in megavoltage photon beams for seven ionization chambers in two orientations — perpendicular and parallel
title Output correction factors for small static fields in megavoltage photon beams for seven ionization chambers in two orientations — perpendicular and parallel
title_full Output correction factors for small static fields in megavoltage photon beams for seven ionization chambers in two orientations — perpendicular and parallel
title_fullStr Output correction factors for small static fields in megavoltage photon beams for seven ionization chambers in two orientations — perpendicular and parallel
title_full_unstemmed Output correction factors for small static fields in megavoltage photon beams for seven ionization chambers in two orientations — perpendicular and parallel
title_short Output correction factors for small static fields in megavoltage photon beams for seven ionization chambers in two orientations — perpendicular and parallel
title_sort output correction factors for small static fields in megavoltage photon beams for seven ionization chambers in two orientations — perpendicular and parallel
topic COMPUTATIONAL AND EXPERIMENTAL DOSIMETRY
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7003763/
https://www.ncbi.nlm.nih.gov/pubmed/31677278
http://dx.doi.org/10.1002/mp.13894
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