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Evaluating and modeling of photon beam attenuation by a standard treatment couch

The purpose of this study was to evaluate beam attenuation by treatment couch and build a treatment couch model in TPS to check for beam–couch intersection at the planning stage and deal with beam attenuation by treatment couch in dose calculation. In this study, a standard treatment couch, Siemens...

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Autores principales: Hu, Zhihui, Dai, Jianrong, Li, Liang, Cao, Yin, Song, Yixin, Fu, Guishan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5718748/
https://www.ncbi.nlm.nih.gov/pubmed/22089012
http://dx.doi.org/10.1120/jacmp.v12i4.3561
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author Hu, Zhihui
Dai, Jianrong
Li, Liang
Cao, Yin
Song, Yixin
Fu, Guishan
author_facet Hu, Zhihui
Dai, Jianrong
Li, Liang
Cao, Yin
Song, Yixin
Fu, Guishan
author_sort Hu, Zhihui
collection PubMed
description The purpose of this study was to evaluate beam attenuation by treatment couch and build a treatment couch model in TPS to check for beam–couch intersection at the planning stage and deal with beam attenuation by treatment couch in dose calculation. In this study, a standard treatment couch, Siemens ZXT couch, has been incorporated into [Formula: see text] 8.0 TPS, based on an existing TPS tool, model‐based segmentation (MBS). This was done by generating the couch's model from contours of the couch, together with the density information. Both the geometric and dosimetric accuracy of the couch model were evaluated. The test of beam–couch intersection prediction showed good agreement between predicted and measured results, and the differences were within 1° gantry rotation. For individual posterior oblique beams, the attenuation by metallic frames and PMMA couch top could reach nearly as high as 60% and 10%, respectively. For several posterior oblique beams (180°, 220°, 235°) that attenuated by the PMMA couch top, the calculated and measured dose distributions were compared. The dose differences at central axis were within 1%, and almost all points agreed with the calculations when the DD and DTA criteria of 3%/3 mm were adopted. The difference between calculated and measured attenuation factors were within 0.5%. This study demonstrates that the couch model created by MBS, which contains geometric and density information of the couch, can be used to detect the beam–couch intersection, and also is able to provide an accurate representation of the couch top attenuation properties in patient dose calculation. PACS numbers: 87.55.D‐, 87.55.Gh, 87.55.km
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spelling pubmed-57187482018-04-02 Evaluating and modeling of photon beam attenuation by a standard treatment couch Hu, Zhihui Dai, Jianrong Li, Liang Cao, Yin Song, Yixin Fu, Guishan J Appl Clin Med Phys Radiation Oncology Physics The purpose of this study was to evaluate beam attenuation by treatment couch and build a treatment couch model in TPS to check for beam–couch intersection at the planning stage and deal with beam attenuation by treatment couch in dose calculation. In this study, a standard treatment couch, Siemens ZXT couch, has been incorporated into [Formula: see text] 8.0 TPS, based on an existing TPS tool, model‐based segmentation (MBS). This was done by generating the couch's model from contours of the couch, together with the density information. Both the geometric and dosimetric accuracy of the couch model were evaluated. The test of beam–couch intersection prediction showed good agreement between predicted and measured results, and the differences were within 1° gantry rotation. For individual posterior oblique beams, the attenuation by metallic frames and PMMA couch top could reach nearly as high as 60% and 10%, respectively. For several posterior oblique beams (180°, 220°, 235°) that attenuated by the PMMA couch top, the calculated and measured dose distributions were compared. The dose differences at central axis were within 1%, and almost all points agreed with the calculations when the DD and DTA criteria of 3%/3 mm were adopted. The difference between calculated and measured attenuation factors were within 0.5%. This study demonstrates that the couch model created by MBS, which contains geometric and density information of the couch, can be used to detect the beam–couch intersection, and also is able to provide an accurate representation of the couch top attenuation properties in patient dose calculation. PACS numbers: 87.55.D‐, 87.55.Gh, 87.55.km John Wiley and Sons Inc. 2011-07-12 /pmc/articles/PMC5718748/ /pubmed/22089012 http://dx.doi.org/10.1120/jacmp.v12i4.3561 Text en © 2011 The Authors. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/3.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Radiation Oncology Physics
Hu, Zhihui
Dai, Jianrong
Li, Liang
Cao, Yin
Song, Yixin
Fu, Guishan
Evaluating and modeling of photon beam attenuation by a standard treatment couch
title Evaluating and modeling of photon beam attenuation by a standard treatment couch
title_full Evaluating and modeling of photon beam attenuation by a standard treatment couch
title_fullStr Evaluating and modeling of photon beam attenuation by a standard treatment couch
title_full_unstemmed Evaluating and modeling of photon beam attenuation by a standard treatment couch
title_short Evaluating and modeling of photon beam attenuation by a standard treatment couch
title_sort evaluating and modeling of photon beam attenuation by a standard treatment couch
topic Radiation Oncology Physics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5718748/
https://www.ncbi.nlm.nih.gov/pubmed/22089012
http://dx.doi.org/10.1120/jacmp.v12i4.3561
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