Leggett R W
Health Sciences Research Division, Oak Ridge National Laboratory, Tennessee 37831.
Health Phys. 1994 Dec;67(6):589-610. doi: 10.1097/00004032-199412000-00002.
In an effort motivated largely by the Chernobyl nuclear accident, the International Commission on Radiological Protection (ICRP) is developing age-specific biokinetic models and dose coefficients for environmentally important radionuclides. This paper describes the ICRP's age-specific biokinetic model for uranium. The model is constructed within a physiologically based framework originally developed for application to the alkaline earth elements but sufficiently general to apply to the larger class of bone-volume-seeking elements. Transfer rates for a reference adult are based mainly on: 1. measurements of uranium in blood and excreta of several human subjects who were intravenously injected with uranium; 2. postmortem measurements of uranium in tissues of some of those subjects; 3. postmortem measurements of uranium in tissues of occupationally and non-occupationally exposed subjects; 4. data on baboons, dogs, and smaller laboratory animals exposed to uranium for experimental purposes; and 5. consideration of the physiological processes thought to control retention and translocation of uranium in the body. Transfer rates for the adult are extended to children by application of a set of generic assumptions applied by the ICRP to calcium-like elements. These assumptions were derived mainly from observations of the age-specific biokinetics of the alkaline earth elements and lead in humans and laboratory animals but are consistent with available age-specific biokinetic data on uranium.
主要受切尔诺贝利核事故的推动,国际放射防护委员会(ICRP)正在为对环境具有重要意义的放射性核素开发特定年龄的生物动力学模型和剂量系数。本文描述了ICRP的铀特定年龄生物动力学模型。该模型是在一个基于生理学的框架内构建的,该框架最初是为应用于碱土元素而开发的,但具有足够的通用性,可应用于更大类别的骨体积寻求元素。参考成年人的转移率主要基于:1. 对几名静脉注射铀的人类受试者血液和排泄物中铀的测量;2. 其中一些受试者组织中铀的死后测量;3. 职业和非职业暴露受试者组织中铀的死后测量;4. 出于实验目的暴露于铀的狒狒、狗和小型实验动物的数据;5. 对被认为控制铀在体内滞留和转运的生理过程的考虑。通过应用ICRP应用于类钙元素的一组通用假设,将成年人的转移率扩展到儿童。这些假设主要来自对人类和实验动物中碱土元素和铅的特定年龄生物动力学的观察,但与现有的铀特定年龄生物动力学数据一致。