Northwest Institute of Nuclear Technology, Xi'an, China.
Health Phys. 2021 Jan;120(1):24-33. doi: 10.1097/HP.0000000000001270.
Biokinetics underlies the basis for assessment of internal exposures. This paper develops a biokinetic method on simultaneous intake of radionuclides from multiple intake scenarios in internal exposures. With numerical techniques that transform the whole biokinetics between the coupled and decoupled representations of the same problem, this method applies to coupled biokinetics with complex structures and has no restrictions of practical importance on the number of intake scenarios, the number of intake parent radionuclides and decay products, and the complexity of decay relationships between parent and progeny nuclides. For illustration, this method is applied to an assumed case of mixed inhalation and ingestion of weapon-grade plutonium material for reference workers that is focused on Pu and Am. Due to coupled biokinetics between the direct intake and ingrowth parts in different intake pathways, the multiple intake results (the contents of lungs, daily excretions, and cumulative contents) display richer behaviors as compared to single intake cases. This method benefits both the prospective and retrospective assessment of internal exposures for complex intake cases in actual applications.
生物动力学是评估内暴露的基础。本文针对内暴露中来自多种摄入情况的放射性核素同时摄入,开发了一种生物动力学方法。该方法运用数值技术,将同一问题的耦合和非耦合表示之间的整个生物动力学转化,适用于具有复杂结构的耦合生物动力学,并且对摄入情况的数量、摄入母体放射性核素和衰变产物的数量以及母体和后代核素之间的衰变关系的复杂性没有实际重要性的限制。为了说明这一点,该方法应用于参考工作人员吸入和摄入武器级钚材料的混合情况,重点关注 Pu 和 Am。由于不同摄入途径中直接摄入和生长部分之间的耦合生物动力学,与单一摄入情况相比,多次摄入的结果(肺部含量、每日排泄量和累积含量)表现出更丰富的行为。该方法有助于实际应用中对复杂摄入情况的内暴露进行前瞻性和回顾性评估。