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Biological dose optimization incorporating intra-tumoral cellular radiosensitivity heterogeneity in ion-beam therapy treatment planning

https://repo.qst.go.jp/records/2001208
https://repo.qst.go.jp/records/2001208
7da2f83f-4f52-463f-bbc2-5b74996a6e8a
アイテムタイプ 学術雑誌論文 / Journal Article(1)
公開日 2025-01-17
タイトル
タイトル Biological dose optimization incorporating intra-tumoral cellular radiosensitivity heterogeneity in ion-beam therapy treatment planning
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 Inaniwa Taku

× Inaniwa Taku

Inaniwa Taku

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Kanematsu Nobuyuki

× Kanematsu Nobuyuki

Kanematsu Nobuyuki

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Koto Masashi

× Koto Masashi

Koto Masashi

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抄録
内容記述タイプ Abstract
内容記述 Objective. Treatment plans of ion-beam therapy have been made under an assumption that all cancer cells within a tumour equally respond to a given radiation. However, an intra-tumoural cellular radiosensitivity heterogeneity clearly exists, and it may lead to an overestimation of therapeutic effects of the radiation. The purpose of this study was to develop a biological model that can incorporate the radiosensitivity heterogeneity into biological optimization for ion-beam therapy treatment planning.
Approach. The radiosensitivity heterogeneity was modeled as the variability of a cell-line specific parameter in the microdosimetric kinetic model following the gamma distribution. To validate the developed intra-tumoural-radiosensitivity-heterogeneity-incorporated microdosimetric kinetic (HMK) model, a treatment plan with H-ion beams was made for a chordoma case assuming a radiosensitivity heterogeneous region within the tumour. To investigate the effects of the radiosensitivity heterogeneity on the biological effectiveness of H-, He-, C-, O-, and Ne-ion beams, the relative biological effectiveness (RBE)-weighted dose distributions were planned to a cuboid target with the stated ion beams without considering the heterogeneity. The planned dose distributions were then recalculated by taking the heterogeneity into account.
Main results: The cell survival fraction and corresponding RBE-weighted dose were formulated based on the HMK model. The first derivative of the RBE-weighted dose distribution was also derived, which is needed for fast biological optimization. For the patient plan, the biological optimization increased the dose to the radiosensitivity heterogeneous region to compensate for the heterogeneity-induced reduction in biological effectiveness of the H-ion beams. The reduction in biological effectiveness due to the heterogeneity was pronounced for low-LET beams but moderate for high-LET beams. The RBE-weighted dose in the cuboid target decreased by 7.6% for the H-ion beam, while it decreased by just 1.4% for the Ne-ion beam.
Significance. The optimal treatment plans that consider the intra-tumoural cellular radiosensitivity heterogeneity can be devised using the HMK model.
書誌情報 PHYSICS IN MEDICINE AND BIOLOGY

巻 69, p. 115017-1-13, 発行日 2024-05
出版者
出版者 IOP Publishing
DOI
識別子タイプ DOI
関連識別子 10.1088/1361-6560/ad4085
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