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原子弹幸存者研究中的剂量估算:其演变与现状

Dose estimation for atomic bomb survivor studies: its evolution and present status.

作者信息

Cullings Harry M, Fujita Shoichiro, Funamoto Sachiyo, Grant Eric J, Kerr George D, Preston Dale L

机构信息

Departments of Statistics, Radiation Effects Research Foundation, Hiroshima, Japan.

出版信息

Radiat Res. 2006 Jul;166(1 Pt 2):219-54. doi: 10.1667/RR3546.1.

Abstract

In the decade after the bombings of Hiroshima and Nagasaki, several large cohorts of survivors were organized for studies of radiation health effects. The U.S. Atomic Bomb Casualty Commission (ABCC) and its U.S./Japan successor, the Radiation Effects Research Foundation (RERF), have performed continuous studies since then, with extensive efforts to collect data on survivor locations and shielding and to create systems to estimate individual doses from the bombs' neutrons and gamma rays. Several successive systems have been developed by extramural working groups and collaboratively implemented by ABCC and RERF investigators. We describe the cohorts and the history and evolution of dose estimation from early efforts through the newest system, DS02, emphasizing the technical development and use of DS02. We describe procedures and data developed at RERF to implement successive systems, including revised rosters of survivors, development of methods to calculate doses for some classes of persons not fitting criteria of the basic systems, and methods to correct for bias arising from errors in calculated doses. We summarize calculated doses and illustrate their change and elaboration through the various systems for a hypothetical example case in each city. We conclude with a description of current efforts and plans for further improvements.

摘要

在广岛和长崎原子弹爆炸后的十年里,组织了几个大型幸存者队列来研究辐射对健康的影响。美国原子弹伤亡调查委员会(ABCC)及其美日后续机构辐射效应研究基金会(RERF)从那时起就一直在进行持续研究,为收集幸存者位置和防护的数据以及创建估算炸弹中子和伽马射线所致个人剂量的系统付出了巨大努力。外部工作组开发了几个相继的系统,并由ABCC和RERF的研究人员共同实施。我们描述了这些队列以及从早期努力到最新系统DS02剂量估算的历史和演变,重点介绍了DS02的技术发展和应用。我们描述了RERF为实施相继系统而开发的程序和数据,包括修订后的幸存者名册、为不符合基本系统标准的某些类别的人员计算剂量的方法以及校正计算剂量误差所产生偏差的方法。我们总结了计算出的剂量,并通过为每个城市的一个假设案例展示了它们在各个系统中的变化和细化情况。最后,我们描述了当前的工作以及进一步改进的计划。

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