Ulanovsky A
Institute for Radiation Protection, Helmholtz Zentrum Munich - German Research Centre for Environmental Health, Ingolstädter Landstraße 1, D-85764, Neuherberg, Germany
Ann ICRP. 2016 Jun;45(1 Suppl):225-38. doi: 10.1177/0146645316630710. Epub 2016 Mar 16.
Diversity of living organisms and their environmental radiation exposure conditions represents a special challenge for non-human dosimetry. In order to contend with such diversity, the International Commission on Radiological Protection (ICRP) has: (a) set up points of reference by providing dose conversion coefficients (DCCs) for reference entities known as 'Reference Animals and Plants' (RAPs); and (b) used dosimetric models that pragmatically assume simple body shapes with uniform composition and density, homogeneous internal contamination, a limited set of idealised external radiation sources, and truncation of the radioactive decay chains. This pragmatic methodology has been further developed and extended systematically. Significant methodological changes include: a new extended approach for assessing doses of external exposure for terrestrial animals, transition to the contemporary ICRP radionuclide database, assessment-specific consideration of the contribution of radioactive progeny to dose coefficients of parent nuclides, and the use of generalised allometric relationships in the estimation of biokinetic or metabolic parameters. The new methodological developments resulted in a revision of the DCCs for RAPs. Tables of the dose coefficients have now been complemented by a web-based software tool, which can be used to calculate a user-specific DCC for an organism of arbitrary mass and shape, located at user-defined height above the ground, and for an arbitrary radionuclide and its radioactive progeny.
生物多样性及其环境辐射暴露条件对非人类剂量测定构成了特殊挑战。为应对这种多样性,国际放射防护委员会(ICRP)采取了以下措施:(a)通过为被称为“参考动植物”(RAPs)的参考实体提供剂量转换系数(DCCs)来设定参考点;(b)使用剂量测定模型,这些模型实际假设身体形状简单,组成和密度均匀,内部污染均匀,理想化的外部辐射源有限,以及放射性衰变链的截断。这种实用方法已得到系统的进一步发展和扩展。重大的方法学变化包括:一种用于评估陆生动物外部暴露剂量的新扩展方法,向当代ICRP放射性核素数据库的转变,对放射性子代对母体核素剂量系数贡献的评估特定考虑,以及在生物动力学或代谢参数估计中使用广义异速生长关系。新的方法学发展导致了RAPs的DCCs的修订。剂量系数表现在已由基于网络的软件工具补充,该工具可用于为任意质量和形状、位于用户定义的地面以上高度的生物体,以及任意放射性核素及其放射性子代计算用户特定的DCC。