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Dosimetry of indigenously developed (192)Ir high-dose rate brachytherapy source: An EGSnrc Monte Carlo study

Clinical application using high-dose rate (HDR) (192)Ir sources in remote afterloading technique is a well-established treatment method. In this direction, Board of Radiation and Isotope Technology (BRIT) and Bhabha Atomic Research Centre, India, jointly indigenously developed a remote afterloading...

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Autores principales: Sahoo, Sridhar, Selvam, T. Palani, Sharma, S. D., Das, Trupti, Dey, A. C., Patil, B. N., Sastri, K.V.S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medknow Publications & Media Pvt Ltd 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4871000/
https://www.ncbi.nlm.nih.gov/pubmed/27217623
http://dx.doi.org/10.4103/0971-6203.181639
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author Sahoo, Sridhar
Selvam, T. Palani
Sharma, S. D.
Das, Trupti
Dey, A. C.
Patil, B. N.
Sastri, K.V.S.
author_facet Sahoo, Sridhar
Selvam, T. Palani
Sharma, S. D.
Das, Trupti
Dey, A. C.
Patil, B. N.
Sastri, K.V.S.
author_sort Sahoo, Sridhar
collection PubMed
description Clinical application using high-dose rate (HDR) (192)Ir sources in remote afterloading technique is a well-established treatment method. In this direction, Board of Radiation and Isotope Technology (BRIT) and Bhabha Atomic Research Centre, India, jointly indigenously developed a remote afterloading machine and (192)Ir HDR source. The two-dimensional (2D) dose distribution and dosimetric parameters of the BRIT (192)Ir HDR source are generated using EGSnrc Monte Carlo code system in a 40 cm dia × 40 cm height cylindrical water phantom. The values of air-kerma strength and dose rate constant for BRIT (192)Ir HDR source are 9.894 × 10(−8) ± 0.06% UBq(−1) and 1.112 ± 0.11% cGyh(−1)U(−1), respectively. The values of radial dose function (g(L)(r)) of this source compare well with the corresponding values of BEBIG, Flexisource, and GammaMed 12i source models. This is because of identical active lengths of the sources (3.5 mm) and the comparable phantom dimensions. A comparison of g(L)(r) values of BRIT source with microSelectron-v1 show differences about 2% at r = 6 cm and up to 13% at r = 12 cm, which is due to differences in phantom dimensions involved in the calculations. The anisotropy function of BRIT (192)Ir HDR source is comparable with the corresponding values of microSelectron-v1 (classic) HDR source.
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spelling pubmed-48710002016-05-23 Dosimetry of indigenously developed (192)Ir high-dose rate brachytherapy source: An EGSnrc Monte Carlo study Sahoo, Sridhar Selvam, T. Palani Sharma, S. D. Das, Trupti Dey, A. C. Patil, B. N. Sastri, K.V.S. J Med Phys Original Article Clinical application using high-dose rate (HDR) (192)Ir sources in remote afterloading technique is a well-established treatment method. In this direction, Board of Radiation and Isotope Technology (BRIT) and Bhabha Atomic Research Centre, India, jointly indigenously developed a remote afterloading machine and (192)Ir HDR source. The two-dimensional (2D) dose distribution and dosimetric parameters of the BRIT (192)Ir HDR source are generated using EGSnrc Monte Carlo code system in a 40 cm dia × 40 cm height cylindrical water phantom. The values of air-kerma strength and dose rate constant for BRIT (192)Ir HDR source are 9.894 × 10(−8) ± 0.06% UBq(−1) and 1.112 ± 0.11% cGyh(−1)U(−1), respectively. The values of radial dose function (g(L)(r)) of this source compare well with the corresponding values of BEBIG, Flexisource, and GammaMed 12i source models. This is because of identical active lengths of the sources (3.5 mm) and the comparable phantom dimensions. A comparison of g(L)(r) values of BRIT source with microSelectron-v1 show differences about 2% at r = 6 cm and up to 13% at r = 12 cm, which is due to differences in phantom dimensions involved in the calculations. The anisotropy function of BRIT (192)Ir HDR source is comparable with the corresponding values of microSelectron-v1 (classic) HDR source. Medknow Publications & Media Pvt Ltd 2016 /pmc/articles/PMC4871000/ /pubmed/27217623 http://dx.doi.org/10.4103/0971-6203.181639 Text en Copyright: © Journal of Medical Physics http://creativecommons.org/licenses/by-nc-sa/3.0 This is an open access article distributed under the terms of the Creative Commons Attribution NonCommercial ShareAlike 3.0 License, which allows others to remix, tweak, and build upon the work non commercially, as long as the author is credited and the new creations are licensed under the identical terms.
spellingShingle Original Article
Sahoo, Sridhar
Selvam, T. Palani
Sharma, S. D.
Das, Trupti
Dey, A. C.
Patil, B. N.
Sastri, K.V.S.
Dosimetry of indigenously developed (192)Ir high-dose rate brachytherapy source: An EGSnrc Monte Carlo study
title Dosimetry of indigenously developed (192)Ir high-dose rate brachytherapy source: An EGSnrc Monte Carlo study
title_full Dosimetry of indigenously developed (192)Ir high-dose rate brachytherapy source: An EGSnrc Monte Carlo study
title_fullStr Dosimetry of indigenously developed (192)Ir high-dose rate brachytherapy source: An EGSnrc Monte Carlo study
title_full_unstemmed Dosimetry of indigenously developed (192)Ir high-dose rate brachytherapy source: An EGSnrc Monte Carlo study
title_short Dosimetry of indigenously developed (192)Ir high-dose rate brachytherapy source: An EGSnrc Monte Carlo study
title_sort dosimetry of indigenously developed (192)ir high-dose rate brachytherapy source: an egsnrc monte carlo study
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4871000/
https://www.ncbi.nlm.nih.gov/pubmed/27217623
http://dx.doi.org/10.4103/0971-6203.181639
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