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Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system

We aim to evaluate the basic characteristics of SRS MapCHECK (SRSMC) for CyberKnife (CK) and establish a dose verification system using SRSMC for the tumor‐tracking irradiation for CK. The field size and angular dependence of SRSMC were evaluated for basic characterization. The output factors (OPFs)...

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Autores principales: Kawabata, Fumitaka, Kamomae, Takeshi, Okudaira, Kuniyasu, Komori, Masataka, Oguchi, Hiroshi, Sasaki, Motoharu, Mori, Masaki, Kawamura, Mariko, Abe, Shinji, Ishihara, Shunichi, Naganawa, Shinji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9359009/
https://www.ncbi.nlm.nih.gov/pubmed/35789532
http://dx.doi.org/10.1002/acm2.13645
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author Kawabata, Fumitaka
Kamomae, Takeshi
Okudaira, Kuniyasu
Komori, Masataka
Oguchi, Hiroshi
Sasaki, Motoharu
Mori, Masaki
Kawamura, Mariko
Abe, Shinji
Ishihara, Shunichi
Naganawa, Shinji
author_facet Kawabata, Fumitaka
Kamomae, Takeshi
Okudaira, Kuniyasu
Komori, Masataka
Oguchi, Hiroshi
Sasaki, Motoharu
Mori, Masaki
Kawamura, Mariko
Abe, Shinji
Ishihara, Shunichi
Naganawa, Shinji
author_sort Kawabata, Fumitaka
collection PubMed
description We aim to evaluate the basic characteristics of SRS MapCHECK (SRSMC) for CyberKnife (CK) and establish a dose verification system using SRSMC for the tumor‐tracking irradiation for CK. The field size and angular dependence of SRSMC were evaluated for basic characterization. The output factors (OPFs) and absolute doses measured by SRSMC were compared with those measured using microDiamond and microchamber detectors and those calculated by the treatment planning system (TPS). The angular dependence was evaluated by comparing the SRSMC with a microchamber. The tumor‐tracking dose verification system consists of SRSMC and a moving platform. The doses measured using SRSMC were compared with the doses measured using a microchamber and radiochromic film. The OPFs and absolute doses of SRSMC were within ±3.0% error for almost all field sizes, and the angular dependence was within ±2.0% for all incidence angles. The absolute dose errors between SRSMC and TPS tended to increase when the field size was smaller than 10 mm. The absolute doses of the tumor‐tracking irradiation measured using SRSMC and those measured using a microchamber agreed within 1.0%, and the gamma pass rates of SRSMC in comparison with those of the radiochromic film were greater than 95%. The basic characteristics of SRSMC for CK presented acceptable results for clinical use. The results of the tumor‐tracking dose verification system realized using SRSMC were equivalent to those of conventional methods, and this system is expected to contribute toward improving the efficiency of quality control in many facilities.
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spelling pubmed-93590092022-08-10 Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system Kawabata, Fumitaka Kamomae, Takeshi Okudaira, Kuniyasu Komori, Masataka Oguchi, Hiroshi Sasaki, Motoharu Mori, Masaki Kawamura, Mariko Abe, Shinji Ishihara, Shunichi Naganawa, Shinji J Appl Clin Med Phys Radiation Measurements We aim to evaluate the basic characteristics of SRS MapCHECK (SRSMC) for CyberKnife (CK) and establish a dose verification system using SRSMC for the tumor‐tracking irradiation for CK. The field size and angular dependence of SRSMC were evaluated for basic characterization. The output factors (OPFs) and absolute doses measured by SRSMC were compared with those measured using microDiamond and microchamber detectors and those calculated by the treatment planning system (TPS). The angular dependence was evaluated by comparing the SRSMC with a microchamber. The tumor‐tracking dose verification system consists of SRSMC and a moving platform. The doses measured using SRSMC were compared with the doses measured using a microchamber and radiochromic film. The OPFs and absolute doses of SRSMC were within ±3.0% error for almost all field sizes, and the angular dependence was within ±2.0% for all incidence angles. The absolute dose errors between SRSMC and TPS tended to increase when the field size was smaller than 10 mm. The absolute doses of the tumor‐tracking irradiation measured using SRSMC and those measured using a microchamber agreed within 1.0%, and the gamma pass rates of SRSMC in comparison with those of the radiochromic film were greater than 95%. The basic characteristics of SRSMC for CK presented acceptable results for clinical use. The results of the tumor‐tracking dose verification system realized using SRSMC were equivalent to those of conventional methods, and this system is expected to contribute toward improving the efficiency of quality control in many facilities. John Wiley and Sons Inc. 2022-07-05 /pmc/articles/PMC9359009/ /pubmed/35789532 http://dx.doi.org/10.1002/acm2.13645 Text en © 2022 The Authors. Journal of Applied Clinical Medical Physics published by Wiley Periodicals, LLC on behalf of The American Association of Physicists in Medicine. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Radiation Measurements
Kawabata, Fumitaka
Kamomae, Takeshi
Okudaira, Kuniyasu
Komori, Masataka
Oguchi, Hiroshi
Sasaki, Motoharu
Mori, Masaki
Kawamura, Mariko
Abe, Shinji
Ishihara, Shunichi
Naganawa, Shinji
Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system
title Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system
title_full Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system
title_fullStr Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system
title_full_unstemmed Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system
title_short Development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the CyberKnife system
title_sort development of a high‐resolution two‐dimensional detector‐based dose verification system for tumor‐tracking irradiation in the cyberknife system
topic Radiation Measurements
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9359009/
https://www.ncbi.nlm.nih.gov/pubmed/35789532
http://dx.doi.org/10.1002/acm2.13645
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