Pass B
Division of Oral and Maxillofacial Radiology, Dalhousie University, Halifax, Nova Scotia, Canada.
Environ Health Perspect. 1997 Dec;105 Suppl 6(Suppl 6):1397-402. doi: 10.1289/ehp.97105s61397.
Quantification of the biologically relevant dose is required to establish cause and effect between radiation detriment or burden and important biological outcomes. Most epidemiologic studies of unanticipated radiation exposure fail to establish cause and effect because researchers have not been able to construct a valid quantification of dose for the exposed population. However, no one biodosimetric technique (biophysical or biological) meets all the requirements of an ideal dosimeter. This paper reviews how the collection of biodosimetric data for victims of radiation accidents can be used to create a dosimetric "gold standard." Particular emphasis is placed on the use of electron spin resonance, a standard for radiation accident dosimetry. As an example of this technique, a review will be presented of a previously reported study of an individual exposed to a 60Co sterilization source.
为确定辐射危害或负担与重要生物学结果之间的因果关系,需要对生物学相关剂量进行量化。大多数关于意外辐射暴露的流行病学研究未能确定因果关系,因为研究人员无法为受辐射人群构建有效的剂量量化。然而,没有一种生物剂量测定技术(生物物理或生物学技术)能满足理想剂量计的所有要求。本文综述了如何利用辐射事故受害者的生物剂量测定数据来创建剂量测定的“金标准”。特别强调了电子自旋共振的应用,它是辐射事故剂量测定的标准方法。作为该技术的一个例子,将介绍一项先前报道的对一名受60Co灭菌源照射的个体的研究。