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Biokinetics of (PU)-P-238 oxides: inferences from bioassay data

机译:(PU)-P-238氧化物的生物机构:生物测定数据的推论

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The bioassay data collected from several workers involved in( 238)PU inhalation incidents have been analysed using the most recent biokinetic models described in the Occupational Intakes of Radionuclides (OIR) series of publications. Although all exposures were thought to be to (PU)-P-238 oxides, the observed urinary excretion patterns differed in different inhalation incidents. The urinary excretion from individuals involved in one of the incidents increased steadily with time, peaking around two to three years before decreasing. This pattern is described in Part 4 of the OIR series using the '(PuO2)-Pu-238, ceramic' model. This non-monotonic behaviour, explained as being due to fragmentation and dissolution, was not specific to the incident, but observed in other incidents. The urinary excretion data collected from individuals involved in another incident showed dissolution behaviour between Type M and Type S. Finally, the bioassay data from yet another incident showed a pattern that appears to represent behaviour more insoluble than Type S, which is possibly a result of self-heating due to the decay heat from (PU)-P-238. The urinary excretion patterns and corresponding dose coefficients have been calculated and compared.
机译:从涉及(238)PU吸入事件中的几名工人收集的生物测定数据已经使用了放射性核素(OIR)系列出版物的职业摄入量描述的最新生物漏氨基型模型进行了分析。虽然被认为是(PU)-P-238氧化物的所有曝光,但观察到的尿液排泄模式在不同的吸入事件中不同。来自其中一个事件的个人的尿液排泄随着时间的推移稳步增加,在减少之前达到两到三年的达到尖峰。使用“(puo2)-pu-238,陶瓷”模型,在OIR系列的第4部分中描述了该模式。这种非单调行为是由于碎裂和溶解而解释的,但事件不具体,但在其他事件中观察到。从涉及另一种事件的个体收集的尿排泄数据在M和I型之间显示溶出行为。最后,来自另一个事件的生物测定数据显示了一种模式,该模式看起来比S比S不溶性更不溶性的模式,这可能是由于衰变的热量来自(PU)-P-238而自加热。已经计算并比较了尿排泄模式和相应的剂量系数。

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