End-weld thickness variation effects on dose rate for a new ir-192 brachytherapy source

Detalhes bibliográficos
Autor(a) principal: ANGELOCCI, LUCAS V.
Data de Publicação: 2019
Outros Autores: NOGUEIRA, BEATRIZ R., ABREU, RODRIGO T., ZEITUNI, CARLOS A., ROSTELATO, MARIA E.C.M., INTERNATIONAL NUCLEAR ATLANTIC CONFERENCE
Tipo de documento: Artigo de conferência
Título da fonte: Repositório Institucional do IPEN
Texto Completo: http://repositorio.ipen.br/handle/123456789/30348
Resumo: Brachytherapy is a form of radiation therapy that uses small sealed sources close to the tumor to deliver a high dose to target while keeping dose on neighboring healthy tissues as low as possible. A wide variety of radionuclides and different sources are available for brachytherapy, each with his own unique geometry. The Laboratory of Sources Production for Radiotherapy (IPEN/CNEN) developed a new Ir-192 seed for eye tumor treatment that is currently under dosimetric definition. This work is part of a larger project that aims the full dosimetry of this new source, but rather than calculate the usual parameters proposed by the American Association of Physicists in Medicine, the specific contribution to the dose rate of a usually not considered factor was investigated under a statistical approach: end-weld thickness variation, which is important due to this source being welded by an in-house method. Its effects were investigated using the Monte Carlo radiation transport code MCNP4C and an in-house routine programmed with MATLAB?? to analyze the data. Final results are presented as a mean value for dose rate at different points of interest and their associated standard deviations. The results are discussed based on the influence of said parameter on different points around the source.
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spelling 2019-11-27T14:25:47Z2019-11-27T14:25:47ZOctober 21-25, 2019http://repositorio.ipen.br/handle/123456789/303480000-0003-2943-60970000-0002-7303-67200000-0003-4609-2281Brachytherapy is a form of radiation therapy that uses small sealed sources close to the tumor to deliver a high dose to target while keeping dose on neighboring healthy tissues as low as possible. A wide variety of radionuclides and different sources are available for brachytherapy, each with his own unique geometry. The Laboratory of Sources Production for Radiotherapy (IPEN/CNEN) developed a new Ir-192 seed for eye tumor treatment that is currently under dosimetric definition. This work is part of a larger project that aims the full dosimetry of this new source, but rather than calculate the usual parameters proposed by the American Association of Physicists in Medicine, the specific contribution to the dose rate of a usually not considered factor was investigated under a statistical approach: end-weld thickness variation, which is important due to this source being welded by an in-house method. Its effects were investigated using the Monte Carlo radiation transport code MCNP4C and an in-house routine programmed with MATLAB?? to analyze the data. Final results are presented as a mean value for dose rate at different points of interest and their associated standard deviations. The results are discussed based on the influence of said parameter on different points around the source.Submitted by Celia Satomi Uehara (celia.u-topservice@ipen.br) on 2019-11-27T14:25:47Z No. of bitstreams: 1 26136.pdf: 351077 bytes, checksum: caa819c90a16127441586eb92c280cf8 (MD5)Made available in DSpace on 2019-11-27T14:25:47Z (GMT). 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dc.title.pt_BR.fl_str_mv End-weld thickness variation effects on dose rate for a new ir-192 brachytherapy source
title End-weld thickness variation effects on dose rate for a new ir-192 brachytherapy source
spellingShingle End-weld thickness variation effects on dose rate for a new ir-192 brachytherapy source
ANGELOCCI, LUCAS V.
brachytherapy
dose rates
dosimetry
eyes
iridium 192
monte carlo method
radiation source implants
sealed sources
thickness
welding
title_short End-weld thickness variation effects on dose rate for a new ir-192 brachytherapy source
title_full End-weld thickness variation effects on dose rate for a new ir-192 brachytherapy source
title_fullStr End-weld thickness variation effects on dose rate for a new ir-192 brachytherapy source
title_full_unstemmed End-weld thickness variation effects on dose rate for a new ir-192 brachytherapy source
title_sort End-weld thickness variation effects on dose rate for a new ir-192 brachytherapy source
author ANGELOCCI, LUCAS V.
author_facet ANGELOCCI, LUCAS V.
NOGUEIRA, BEATRIZ R.
ABREU, RODRIGO T.
ZEITUNI, CARLOS A.
ROSTELATO, MARIA E.C.M.
INTERNATIONAL NUCLEAR ATLANTIC CONFERENCE
author_role author
author2 NOGUEIRA, BEATRIZ R.
ABREU, RODRIGO T.
ZEITUNI, CARLOS A.
ROSTELATO, MARIA E.C.M.
INTERNATIONAL NUCLEAR ATLANTIC CONFERENCE
author2_role author
author
author
author
author
dc.contributor.author.fl_str_mv ANGELOCCI, LUCAS V.
NOGUEIRA, BEATRIZ R.
ABREU, RODRIGO T.
ZEITUNI, CARLOS A.
ROSTELATO, MARIA E.C.M.
INTERNATIONAL NUCLEAR ATLANTIC CONFERENCE
dc.subject.por.fl_str_mv brachytherapy
dose rates
dosimetry
eyes
iridium 192
monte carlo method
radiation source implants
sealed sources
thickness
welding
topic brachytherapy
dose rates
dosimetry
eyes
iridium 192
monte carlo method
radiation source implants
sealed sources
thickness
welding
description Brachytherapy is a form of radiation therapy that uses small sealed sources close to the tumor to deliver a high dose to target while keeping dose on neighboring healthy tissues as low as possible. A wide variety of radionuclides and different sources are available for brachytherapy, each with his own unique geometry. The Laboratory of Sources Production for Radiotherapy (IPEN/CNEN) developed a new Ir-192 seed for eye tumor treatment that is currently under dosimetric definition. This work is part of a larger project that aims the full dosimetry of this new source, but rather than calculate the usual parameters proposed by the American Association of Physicists in Medicine, the specific contribution to the dose rate of a usually not considered factor was investigated under a statistical approach: end-weld thickness variation, which is important due to this source being welded by an in-house method. Its effects were investigated using the Monte Carlo radiation transport code MCNP4C and an in-house routine programmed with MATLAB?? to analyze the data. Final results are presented as a mean value for dose rate at different points of interest and their associated standard deviations. The results are discussed based on the influence of said parameter on different points around the source.
publishDate 2019
dc.date.evento.pt_BR.fl_str_mv October 21-25, 2019
dc.date.accessioned.fl_str_mv 2019-11-27T14:25:47Z
dc.date.available.fl_str_mv 2019-11-27T14:25:47Z
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