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On the Application of an Environmental Radiological Assessment System to an Anthropomorphic Surrogate

机译:环境放射学评估系统在拟人替代物中的应用

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Recent developments have seen the expansion of the system of radiological protection for humans to one including protection of the environment against detrimental effects of radiation exposure, although a fully developed framework for integration of human and ecological risk assessment for radionuclides is only at an early stage. In the context of integration, significant differences exist between assessment methodologies for humans and the environment in terms of transfer, exposure, and dosimetry. The aim of this elaboration was to explore possible implications of the simplifications made within the system of environmental radiological protection in terms of the efficacy and robustness of dose-rate predictions. A comparison was conducted between human radiological assessment and environmental radiological assessment for an anthropomorphic surrogate, the results for which, produced by both the environmental and human-oriented risk assessment systems, were critically compared and contrasted. The adopted approach split the calculations into several parts, these being 1) physical transfer in an ecosystem, 2) transfer to humans, 3) internal doses to humans, and 4) external doses to humans. The calculations were carried out using both a human radiological assessment and ecological risk assessment system for the same surrogate. The results of this comparison provided indications as to where the 2 systems are amenable to possible integration and where such integration may prove difficult. Initial stage transport models seem to be an obvious component amenable for integration, although complete integration is arguably unattainable as the differences between endpoints mean that the relevant outputs from the models will not be the same. For the transfer and dosimetry components of 2 typical methodologies, it seems that the efficacy of the environmental system is radionuclide-dependent, the predictions given by the environmental system for ~(90)Sr and ~(60)Co being unsatisfactory and those for ~(239)Pu and ~(210)Po being evidently poor. Integration in this context might take the form of exploring the biokinetic models developed for humans with regard to selected animals and radionuclides. External dose assessment for environmental and human systems provide results for the surrogate that correspond quite closely providing an indication that integration in this regard is perhaps unnecessary.
机译:最近的事态发展使对人类的放射防护系统扩展到一个包括保护环境免受辐射暴露有害影响的系统,尽管对人类和放射性核素的生态风险评估进行整合的全面框架只是处于早期阶段。在整合的背景下,人类和环境的评估方法在转移,接触和剂量方面存在显着差异。阐述的目的是就剂量率预测的有效性和鲁棒性,探讨在环境放射防护系统内进行简化的可能含义。在人类放射学评估与环境放射学评估之间进行了拟人化替代的比较,对由环境和以人为本的风险评估系统产生的结果进行了严格的比较和对比。所采用的方法将计算分为几个部分,这些部分是:1)生态系统中的物理迁移; 2)迁移到人类; 3)迁移到人类的内部剂量; 4)迁移到人类的外部剂量。对于相同的替代物,使用人类放射学评估和生态风险评估系统进行了计算。该比较的结果提供了关于这两个系统在哪里适合可能的集成以及在哪里证明这种集成可能困难的指示。初期运输模型似乎是易于整合的明显组成部分,尽管完全整合是无法实现的,因为端点之间的差异意味着模型的相关输出将不相同。对于2种典型方法的转移和剂量学组成部分,似乎环境系统的功效取决于放射性核素,环境系统对〜(90)Sr和〜(60)Co的预测不令人满意,而对于〜(90)Sr和〜(60)Co的预测则令人满意(239)Pu和〜(210)Po明显较差。在这种情况下,整合可以采取探索针对选定动物和放射性核素为人类开发的生物动力学模型的形式。环境和人体系统的外部剂量评估为替代药物提供了非常接近的结果,这表明在这方面进行整合可能是不必要的。

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