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使用2×2英寸碘化钠探测器评估放射性散布装置爆炸后的体内污染情况。

Assessing internal contamination after the detonation of a radiological dispersion device using a 2x2-inch sodium iodide detector.

作者信息

Dewji S, Hertel N, Ansari A

机构信息

Georgia Institute of Technology, Nuclear and Radiological Engineering Program, Atlanta, GA 30332-0405, USA.

出版信息

Radiat Prot Dosimetry. 2013 Jul;155(3):300-16. doi: 10.1093/rpd/nct014. Epub 2013 Feb 21.

Abstract

The detonation of a radiological dispersion device may result in a situation where individuals inhale radioactive materials and require rapid assessment of internal contamination. The feasibility of using a 2×2-inch sodium-iodide detector to determine the committed effective dose to an individual following acute inhalation of gamma-emitting radionuclides was investigated. Experimental configurations of point sources with a polymethyl methacrylate slab phantom were used to validate Monte Carlo simulations. The validated detector model was used to simulate the responses for four detector positions on six different anthropomorphic phantoms. The nuclides examined included (241)Am, (60)Co, (137)Cs, (131)I and (192)Ir. Biokinetic modelling was employed to determine the distributed activity in the body as a function of post-inhalation time. The simulation and biokinetic data were used to determine time-dependent count-rate values at optimal detector locations on the body for each radionuclide corresponding to a target committed effective dose (E50) value of 250 mSv.

摘要

放射性散布装置的引爆可能导致个体吸入放射性物质并需要对体内污染进行快速评估的情况。研究了使用2×2英寸碘化钠探测器来确定个体在急性吸入发射伽马射线的放射性核素后所接受的待积有效剂量的可行性。使用带有聚甲基丙烯酸甲酯平板模型的点源实验配置来验证蒙特卡罗模拟。经验证的探测器模型用于模拟六个不同人体模型上四个探测器位置的响应。所检测的核素包括镅-241、钴-60、铯-137、碘-131和铱-192。采用生物动力学建模来确定体内作为吸入后时间函数的分布活度。模拟和生物动力学数据用于确定每个放射性核素在对应于250 mSv目标待积有效剂量(E50)值的人体最佳探测器位置处随时间变化的计数率值。

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