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在辐射补偿计划中采用国际放射防护委员会(ICRP)116号出版物的剂量转换系数来重建器官剂量。

Implementation of ICRP 116 Dose Conversion Coefficients for Reconstructing Organ Dose in a Radiation Compensation Program.

作者信息

Taulbee Timothy D, McCartney Keith A, Traub Richard, Smith Matthew H, Neton James W

机构信息

Centers for Disease Control and Prevention (CDC), National Institute for Occupational Safety and Health (NIOSH), 1150 Tusculum Avenue, Mail Stop C-45, Cincinnati, OH 45226,USA.

Dade Moeller-a NV5 Company, 1835 Terminal Drive, Richland, WA 99354,USA.

出版信息

Radiat Prot Dosimetry. 2017 Apr 1;173(1-3):131-137. doi: 10.1093/rpd/ncw305.

Abstract

Since 2000, National Institute for Occupational Safety and Health (NIOSH) has used dose conversion coefficients published by the International Commission on Radiation Protection in report 74 (ICRP 74) to determine organ dose from external radiation sources. In 2010, the ICRP issued publication 116 using more realistic phantoms than ICRP 74. NIOSH has developed a Monte Carlo method to sample the energy-organ-specific distribution of the ICRP 116 conversion coefficients to determine the organ dose and the associated uncertainty. Using Monte Carlo methods, irradiation geometry factors (IGFs) were developed to convert the measured dosemeter dose on the front of the body to values that are compatible with ICRP 116 organ dose conversion coefficients. Specific IGFs were developed for (1) both neutrons and photon exposures, (2) to male and female workers and (3) for rotational and isotropic exposure geometries. The computed mean organ dose and the associated uncertainty are used in the probability of causation calculation for compensation.

摘要

自2000年以来,美国国家职业安全与健康研究所(NIOSH)一直使用国际辐射防护委员会第74号报告(ICRP 74)中公布的剂量转换系数来确定外部辐射源产生的器官剂量。2010年,ICRP发布了第116号出版物,其中使用了比ICRP 74更符合实际情况的人体模型。NIOSH开发了一种蒙特卡罗方法,对ICRP 116转换系数的能量-器官特定分布进行采样,以确定器官剂量及相关不确定性。利用蒙特卡罗方法,开发了照射几何因子(IGF),将身体前部测量的剂量计剂量转换为与ICRP 116器官剂量转换系数兼容的值。针对以下情况开发了特定的IGF:(1)中子和光子照射;(2)男性和女性工人;(3)旋转和各向同性照射几何形状。计算得到的平均器官剂量及相关不确定性用于赔偿的因果关系概率计算。

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