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Establishment of a dose-response curve of 60Co gamma-ray irradiation by dicentric chromosome analysis

https://repo.qst.go.jp/records/54334
https://repo.qst.go.jp/records/54334
1cb95b98-d355-4f87-b79f-f1377a706ac1
Item type 会議発表論文 / Conference Paper(1)
公開日 2012-10-01
タイトル
タイトル Establishment of a dose-response curve of 60Co gamma-ray irradiation by dicentric chromosome analysis
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_5794
資源タイプ conference paper
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 Suto, Yumiko

× Suto, Yumiko

WEKO 555014

Suto, Yumiko

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Akiyma, Miho

× Akiyma, Miho

WEKO 555015

Akiyma, Miho

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Hirai, Momoki

× Hirai, Momoki

WEKO 555016

Hirai, Momoki

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Yuuki, Masanori

× Yuuki, Masanori

WEKO 555017

Yuuki, Masanori

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Nakagawa, Takashi

× Nakagawa, Takashi

WEKO 555018

Nakagawa, Takashi

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Tominaga, Takako

× Tominaga, Takako

WEKO 555019

Tominaga, Takako

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Nakayama, Fumiaki

× Nakayama, Fumiaki

WEKO 555020

Nakayama, Fumiaki

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Suzuki, Tosikazu

× Suzuki, Tosikazu

WEKO 555021

Suzuki, Tosikazu

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Sugiura, Nobuyuki

× Sugiura, Nobuyuki

WEKO 555022

Sugiura, Nobuyuki

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數藤 由美子

× 數藤 由美子

WEKO 555023

en 數藤 由美子

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穐山 美穂

× 穐山 美穂

WEKO 555024

en 穐山 美穂

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平井 百樹

× 平井 百樹

WEKO 555025

en 平井 百樹

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結城 政則

× 結城 政則

WEKO 555026

en 結城 政則

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中川 貴司

× 中川 貴司

WEKO 555027

en 中川 貴司

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富永 隆子

× 富永 隆子

WEKO 555028

en 富永 隆子

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中山 文明

× 中山 文明

WEKO 555029

en 中山 文明

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鈴木 敏和

× 鈴木 敏和

WEKO 555030

en 鈴木 敏和

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杉浦 紳之

× 杉浦 紳之

WEKO 555031

en 杉浦 紳之

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抄録
内容記述タイプ Abstract
内容記述 Ionizing radiation exposure causes DNA strand breaks that lead to chromosome aberrations. Among radiation-induced chromosome aberrations, multicentric chromosomes, as represented by dicentric chromosomes, are considered to be sensitive and specific biomarkers for assessing the radiation dose. For more than three decades, dicentric chromosome analysis (DCA) has been the Gold Standard of biodosimetry. In DCA, a dicentric yield per cell of a radiation-exposed patient is applied to a calibration curve (dose-response curve). Many dose-response curves have been proposed thus far, but most of them have been generated respectively from one healthy donor by one in vitro experiment. According to the result of international collaborative works on inter-laboratory comparisons, it has been reported that in DCA, the significant variation of dose estimation is partly attributed to different experimental protocols including the scoring criteria of chromosome aberrations among institutions / investigators. Thus, it is necessary for a biodosimetry laboratory to have and use its own dose-response curve under its own experimental conditions.
In the present study, in order to evaluate the dose estimation of patients for better medical preparedness, a dose-response curve was established by analyzing 13 occupationally non-exposed healthy volunteers by DCA using peripheral blood samples irradiated in vitro with 60Co gamma-rays at seven different doses (0, 0.5, 1.0, 2.0, 3.0, 4.0 and 5.0 Gy). The result of the first-division metaphase scoring followed a linear-quadratic equation, Y=A+aD+bD2 (Y: the yield of dicentrics, D: the dose, A: the background frequency, a: the linear coefficient, b: the dose squared coefficient; IAEA Technical Reports Series No. 405 Cytogenetic Analysis for Radiation Dose Assessment, Vienna, 2001).
Then, we established a practical biodosimetry protocol for radiation emergency medicine, tentatively called the NIRS DCA System (including sample collection, cell culture, chromosome preparation, automated metaphase image-capturing, chromosome aberration scoring in triage- and full estimation-modes, and a diagnostic report format), for conducting dose estimation within several days of receiving blood samples. The NIRS DCA System is now being used for actual radiation exposure accidents in Japan.
書誌情報 Proceedings of International Congress of the International Radiation Protection Association

p. 000-000, 発行日 2012-09
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