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Patient organ doses from megavoltage computed tomography delivery with a helical tomotherapy unit using a general treatment planning system

The purpose of this study was to quantify actual patient organ doses from megavoltage computed tomography (MVCT) using an MVCT beam model of a helical tomotherapy unit in a general treatment planning system (TPS). Dosimetric parameters (percentage depth dose, lateral beam profile, and longitudinal b...

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Autores principales: Nagata, Hironori, Sugimoto, Satoru, Hongo, Hideyuki, Hashimoto, Harumitsu, Sato, Yuki, Kawabata, Toru, Watanabe, Hiroyuki, Inoue, Tatsuya, Usui, Keisuke, Kurokawa, Chie, Sasai, Keisuke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6530616/
https://www.ncbi.nlm.nih.gov/pubmed/30929023
http://dx.doi.org/10.1093/jrr/rrz005
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author Nagata, Hironori
Sugimoto, Satoru
Hongo, Hideyuki
Hashimoto, Harumitsu
Sato, Yuki
Kawabata, Toru
Watanabe, Hiroyuki
Inoue, Tatsuya
Usui, Keisuke
Kurokawa, Chie
Sasai, Keisuke
author_facet Nagata, Hironori
Sugimoto, Satoru
Hongo, Hideyuki
Hashimoto, Harumitsu
Sato, Yuki
Kawabata, Toru
Watanabe, Hiroyuki
Inoue, Tatsuya
Usui, Keisuke
Kurokawa, Chie
Sasai, Keisuke
author_sort Nagata, Hironori
collection PubMed
description The purpose of this study was to quantify actual patient organ doses from megavoltage computed tomography (MVCT) using an MVCT beam model of a helical tomotherapy unit in a general treatment planning system (TPS). Dosimetric parameters (percentage depth dose, lateral beam profile, and longitudinal beam profile) of the MVCT beam were measured using Gafchromic EBT3 films (ISP Corporation, Wayne, NJ, USA) and used for beam modeling in a Pinnacle(3) TPS (Philips, Amsterdam, Netherlands); this TPS is widely used with linear accelerators. The created beam model was adjusted and validated by assessing point doses in a cylindrical phantom in static and helical beam plans with fine, normal and coarse pitches. Maximum doses delivered to important organs from MVCT delivery for five clinical cases were calculated using the created beam model. The difference (average ± one standard deviation for all evaluation points) between calculated and measured doses was −0.69 ± 1.20% in the static beam plan. In the helical beam plan, the differences were 1.83 ± 2.65%, 1.35 ± 5.94% and −0.66 ± 8.48% for fine, normal and coarse pitches, respectively. The average maximum additional dose to important organs from MVCT in clinical cases was 0.82% of the prescribed dose. In conclusion, we investigated a method for quantifying patient organ dose from MVCT delivery on helical tomotherapy using an MVCT beam model in a general TPS. This technique enables estimation of the patient-specific organ dose from MVCT delivery, without the need for additional equipment.
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spelling pubmed-65306162019-05-28 Patient organ doses from megavoltage computed tomography delivery with a helical tomotherapy unit using a general treatment planning system Nagata, Hironori Sugimoto, Satoru Hongo, Hideyuki Hashimoto, Harumitsu Sato, Yuki Kawabata, Toru Watanabe, Hiroyuki Inoue, Tatsuya Usui, Keisuke Kurokawa, Chie Sasai, Keisuke J Radiat Res Regular Paper The purpose of this study was to quantify actual patient organ doses from megavoltage computed tomography (MVCT) using an MVCT beam model of a helical tomotherapy unit in a general treatment planning system (TPS). Dosimetric parameters (percentage depth dose, lateral beam profile, and longitudinal beam profile) of the MVCT beam were measured using Gafchromic EBT3 films (ISP Corporation, Wayne, NJ, USA) and used for beam modeling in a Pinnacle(3) TPS (Philips, Amsterdam, Netherlands); this TPS is widely used with linear accelerators. The created beam model was adjusted and validated by assessing point doses in a cylindrical phantom in static and helical beam plans with fine, normal and coarse pitches. Maximum doses delivered to important organs from MVCT delivery for five clinical cases were calculated using the created beam model. The difference (average ± one standard deviation for all evaluation points) between calculated and measured doses was −0.69 ± 1.20% in the static beam plan. In the helical beam plan, the differences were 1.83 ± 2.65%, 1.35 ± 5.94% and −0.66 ± 8.48% for fine, normal and coarse pitches, respectively. The average maximum additional dose to important organs from MVCT in clinical cases was 0.82% of the prescribed dose. In conclusion, we investigated a method for quantifying patient organ dose from MVCT delivery on helical tomotherapy using an MVCT beam model in a general TPS. This technique enables estimation of the patient-specific organ dose from MVCT delivery, without the need for additional equipment. Oxford University Press 2019-05 2019-03-31 /pmc/articles/PMC6530616/ /pubmed/30929023 http://dx.doi.org/10.1093/jrr/rrz005 Text en © The Author(s) 2019. Published by Oxford University Press on behalf of The Japan Radiation Research Society and Japanese Society for Radiation Oncology. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Regular Paper
Nagata, Hironori
Sugimoto, Satoru
Hongo, Hideyuki
Hashimoto, Harumitsu
Sato, Yuki
Kawabata, Toru
Watanabe, Hiroyuki
Inoue, Tatsuya
Usui, Keisuke
Kurokawa, Chie
Sasai, Keisuke
Patient organ doses from megavoltage computed tomography delivery with a helical tomotherapy unit using a general treatment planning system
title Patient organ doses from megavoltage computed tomography delivery with a helical tomotherapy unit using a general treatment planning system
title_full Patient organ doses from megavoltage computed tomography delivery with a helical tomotherapy unit using a general treatment planning system
title_fullStr Patient organ doses from megavoltage computed tomography delivery with a helical tomotherapy unit using a general treatment planning system
title_full_unstemmed Patient organ doses from megavoltage computed tomography delivery with a helical tomotherapy unit using a general treatment planning system
title_short Patient organ doses from megavoltage computed tomography delivery with a helical tomotherapy unit using a general treatment planning system
title_sort patient organ doses from megavoltage computed tomography delivery with a helical tomotherapy unit using a general treatment planning system
topic Regular Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6530616/
https://www.ncbi.nlm.nih.gov/pubmed/30929023
http://dx.doi.org/10.1093/jrr/rrz005
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