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  1. 原著論文

Effects of dose-delivery time structure on biological effectiveness for therapeutic carbon-ion beams evaluated with microdosimetric kinetic model

https://repo.qst.go.jp/records/46577
https://repo.qst.go.jp/records/46577
b5124d8b-97c2-4082-ad1f-fdc72dd3f6f1
Item type 学術雑誌論文 / Journal Article(1)
公開日 2013-08-08
タイトル
タイトル Effects of dose-delivery time structure on biological effectiveness for therapeutic carbon-ion beams evaluated with microdosimetric kinetic model
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
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
著者 Inaniwa, Taku

× Inaniwa, Taku

WEKO 464245

Inaniwa, Taku

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Suzuki, Masao

× Suzuki, Masao

WEKO 464246

Suzuki, Masao

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Furukawa, Takuji

× Furukawa, Takuji

WEKO 464247

Furukawa, Takuji

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Kase, Yuki

× Kase, Yuki

WEKO 464248

Kase, Yuki

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Kanematsu, Nobuyuki

× Kanematsu, Nobuyuki

WEKO 464249

Kanematsu, Nobuyuki

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Shirai, Toshiyuki

× Shirai, Toshiyuki

WEKO 464250

Shirai, Toshiyuki

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et.al

× et.al

WEKO 464251

et.al

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稲庭 拓

× 稲庭 拓

WEKO 464252

en 稲庭 拓

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鈴木 雅雄

× 鈴木 雅雄

WEKO 464253

en 鈴木 雅雄

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古川 卓司

× 古川 卓司

WEKO 464254

en 古川 卓司

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兼松 伸幸

× 兼松 伸幸

WEKO 464255

en 兼松 伸幸

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白井 敏之

× 白井 敏之

WEKO 464256

en 白井 敏之

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抄録
内容記述タイプ Abstract
内容記述 Treatment plans of carbon-ion radiotherapy have been made on the assumption that the beams are delivered instantaneously irrespective to the dose delivery time as well as the interruption time. The advanced therapeutic techniques such as a hypofractionation and a respiratory gating usually require more time to deliver a fractioned dose than conventional techniques. The purpose of this study was to investigate the effects of dose-delivery time structure on biological effectiveness in carbon-ion radiotherapy. The rate equations defined in the microdosimetric kinetic model (MKM) for primary lesions caused in the DNA were reanalyzed and applied to continuous or interrupted irradiation with therapeutic carbon-ion beams. The rate constants characterizing the time of the primary nonlethal lesions to repair or to convert to lethal lesion were experimentally determined for human salivary gland (HSG) tumor cells. Treatment plans were made for a patient case on the assumption that the beam is delivered instantaneously. The RBE weighted absorbed doses of 2.65, 3.45 and 6.86 Gy (RBE) was prescribed to the target. These plans were recalculated by varying the dose delivery time and the interruption time ranging from 1-60 min based on the MKM with the determined parameters. The sum of rate constants for nonlethal lesion to repair a and to convert to lethal lesion c, (a + c), is 2.19 +- 0.40 h(-1). The biological effectiveness in the target decreases with the dose delivery time T in continuous irradiation compared to the planned one due to the repair of nonlethal lesions during the irradiation. The biological effectiveness in terms of equivalent acute dose decreases to 99.7% and 96.4% for T = 3 and 60 min in 2.65 Gy (RBE), 99.5% and 94.3% in 4.35 Gy (RBE), and 99.4% and 91.7% in 6.86 Gy (RBE), respectively. For all the cases, the decrease of biological effectiveness is larger at the proximal side with low-LET than the distal side with high-LET. Similar reductions of biological effectiveness with comparable amounts are observed in the interrupted irradiations with prolonged interruption time t. For the fraction time, i.e., T and/or t, shorter than 3 min, the decrease of the biological effectiveness with respect to the planned one is less than 1.0%. However, if the fraction time prolongs to 30 min or longer, the biological effectiveness is significantly influenced in carbon-ion radiotherapy, especially with high-prescribed doses. These effects, if confirmed by clinical studies, should be considered in designing the carbon-ion treatment planning.
書誌情報 Radiation Research

巻 180, 号 1, p. 44-59, 発行日 2013-06
ISSN
収録物識別子タイプ ISSN
収録物識別子 0033-7587
DOI
識別子タイプ DOI
関連識別子 10.667/rr3178.1
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