60Co辐射体在体温下水影吸收剂量率的测量。实验结果与蒙特卡罗模拟的比较

IF 0.9 4区 工程技术 Q3 NUCLEAR SCIENCE & TECHNOLOGY
Y. Kye, Hyojin Kim, Ji-Eun Lee, Yun-Jae Seo, Jung-Ki Kim, W. Jo, Dong-yeon Lee, Y. Kang
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引用次数: 1

摘要

为了分析辐射的生物学效应,重要的是使体外实验条件与体内实验条件密切匹配。在本研究中,我们构建了一个辐照系统,在类似体内实验的条件下进行辐照实验。东南放射医学研究所拥有含有60Co放射性同位素的伽玛辐照器,用于研究和离子室的标准校准认证。水模的温度保持与正常人体相同,并使用具有可追溯性的离子室精确进行物理剂量测定。我们报告了使用农民式离子室在血液样本照射位置测量横向剖面、深度剖面和水中吸收剂量率(Dw)。利用蒙特卡罗程序对辐照系统的源、准直器、辐照体、模体和附加结构进行了模拟,并将模拟结果与实验结果进行了比较。实验和理论评估的剂量率为0.2975 ?0.0055 Gymin ?1(覆盖率因子k = 2)和0.2978 ?0.0052 Gymin ?1(在覆盖系数k = 2时),源地距离为100厘米,5gcm ?2、水深分别在水中幻影。血液辐照将在体外进行,条件类似于体内条件,以提供基于剂量学的可追溯的剂量-反应曲线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of absorbed dose rate in water phantom maintained at body temperature by 60Co irradiator – comparison of experimental results and Monte Carlo simulation
To analyze the biological effects of radiation, it is important that the conditions of in vitro experiments match closely with those of in vivo experiments. In this study, we constructed an irradiation system to conduct irradiation experiments under conditions similar to those of in vivo experiments. The Dongnam Institute of Radiological and Medial Sciences has a gamma irradiator including 60Co radioisotope for research purposes and accreditation for standard calibration of the ion chamber. The temperature of the water phantom was maintained the same as that of the normal human body, and the physical dosimetry was carried out accurately using the ion chamber with traceability. We report the measurement of lateral profiles, depth profiles, and absorbed dose rate in water, Dw, at the irradiation location of the blood samples using a farmer-type ion chamber. We simulated the source, collimator, irradiator, phantom, and extra structure of the gamma irradiation system using the Monte Carlo code and compared the simulated and the experimental results. The experimentally and theoretically evaluated dose rates were 0.2975 ? 0.0055 Gymin?1 (at coverage factor k = 2) and 0.2978 ? 0.0052 Gymin?1 (at coverage factor k = 2) at source-to-surface distance of 100 cm and 5 gcm?2 depth in the water phantom, respectively. Blood irradiation will be conducted in vitro, under conditions similar to in vivo conditions, to provide the dose-response curve based on dosimetry with traceability.
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来源期刊
Nuclear Technology & Radiation Protection
Nuclear Technology & Radiation Protection NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
2.00
自引率
41.70%
发文量
10
审稿时长
6-12 weeks
期刊介绍: Nuclear Technology & Radiation Protection is an international scientific journal covering the wide range of disciplines involved in nuclear science and technology as well as in the field of radiation protection. The journal is open for scientific papers, short papers, review articles, and technical papers dealing with nuclear power, research reactors, accelerators, nuclear materials, waste management, radiation measurements, and environmental problems. However, basic reactor physics and design, particle and radiation transport theory, and development of numerical methods and codes will also be important aspects of the editorial policy.
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