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Clinical dose assessment for scanned carbon-ion radiotherapy using linear energy transfer measurements and Monte Carlo simulations.

https://repo.qst.go.jp/records/2000323
https://repo.qst.go.jp/records/2000323
2479e198-8087-44b8-8931-46d594765f8c
アイテムタイプ 学術雑誌論文 / Journal Article(1)
公開日 2023-10-20
タイトル
タイトル Clinical dose assessment for scanned carbon-ion radiotherapy using linear energy transfer measurements and Monte Carlo simulations.
言語 en
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ journal article
著者 Taku Nakaji

× Taku Nakaji

Taku Nakaji

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Tatsuaki Kanai

× Tatsuaki Kanai

Tatsuaki Kanai

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Masaaki Takashina

× Masaaki Takashina

Masaaki Takashina

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Akihiko Matsumura

× Akihiko Matsumura

Akihiko Matsumura

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Kohei Osaki

× Kohei Osaki

Kohei Osaki

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Masashi Yagi

× Masashi Yagi

Masashi Yagi

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Toshiro Tsubouchi

× Toshiro Tsubouchi

Toshiro Tsubouchi

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Noriaki Hamatani

× Noriaki Hamatani

Noriaki Hamatani

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Kazuhiko Ogawa

× Kazuhiko Ogawa

Kazuhiko Ogawa

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抄録
内容記述タイプ Abstract
内容記述 : Dosimetric commissioning of treatment planning systems (TPS) focuses on validating the agreement of the physical dose with experimental data. For carbon-ion radiotherapy, the commissioning of the relative biological effectiveness (RBE) is necessary to predict the clinical outcome based on the radiation quality of the mixed radiation field. In this study, we proposed a approach for RBE commissioning using Monte Carlo (MC) simulations, which was further strengthen by RBE validation based on linear energy transfer (LET) measurements.: First, we tuned the MC simulation based on the results of dosimetric experiments including the beam ranges, beam sizes, and MU calibrations. Furthermore, we compared simulated results to measured depth- and radial-LET distributions of the 430 MeV/u carbon-ion spot beam with a 1.5 mm, 36-μm-thick silicon detector. The measured dose-averaged LET (LET) and RBE were compared with the simulated results. The RBE was calculated based on the mixed beam model with linear-quadratic parameters depending on the LET. Finally, TPS-calculated clinical dose profiles were validated through the tuned MC-based calculations.: A 10 keV/μm and 0.15 agreement for LETand RBE, respectively, were found between simulation and measurement results obtained for a 2-σ lateral size of 430 MeV/u carbon-ion spot beam in water. These results suggested that the tuned MC simulation can be used with acceptable precision for the RBE and LET calculations of carbon-ion spot beam within the clinical energy range. For physical and clinical doses, the TPS and MC-based calculations showed good agreements within ±1.0% at the centre of the spread-out Bragg peaks.: The tuned MC simulation can accurately reproduce the actual carbon-ion beams, and it can be used to validate the physical and clinical dose distributions calculated by TPS. Moreover, the MC simulation can be used for dosimetric commissioning, including clinical doses, without LET measurements.
書誌情報 Physics in medicine and biology

巻 67, 号 24, p. 245021, 発行日 2022-11
出版者
出版者 IOP Publishing
ISSN
収録物識別子タイプ ISSN
収録物識別子 1361-6560
PubMed番号
識別子タイプ PMID
関連識別子 36327456
DOI
識別子タイプ DOI
関連識別子 10.1088/1361-6560/aca003
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