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USING PLUTONIUM EXCRETION DATA TO PREDICT DOSE FROM CHRONIC AND ACUTE EXPOSURES

机译:使用P排泄数据预测慢性和急性暴露的剂量

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摘要

Using fission track analysis (FTA) in conjunction with a composite, theoretical model of the transport of plutonium (Pu) in the human body creates a new opportunity to estimate the exposure and dose to the general population due to plutonium in the environment. For the purposes of this study, data derived from FTA performed at the University of Utah's Center for Excellence in Nuclear Technology, Engineering and Research (CENTER) has been used to predict doses for two populations. Both population groups have no known history of plutonium exposures. Therefore, two exposure scenarios (acute and chronic) were assumed to provide boundaries for dose estimates. Dose predictions focus on equivalent dose to lung, liver, and skeletal systems and range from 0.01 mSv to 560 mSv as a function of organ, sample collection interval and exposure type. Additionally, these reconstructions demonstrate the sensitivity of dose calculations to time of sample collection and duration of exposure. As anticipated for a class Y particle, the predicted average equivalent tissue dose to the lungs represents the highest dose to the evaluated compartments. Furthermore, the data imply that the general population receives a dose one order of magnitude lower than a radiation worker with no history of exposure for the equivalent exposure scenario.
机译:结合裂变径迹分析(FTA)和复合物,theoretical在人体中运输的理论模型为估计环境中p对一般人群的暴露和剂量提供了新的机会。为了本研究的目的,已使用在犹他大学核技术,工程与研究卓越中心(CENTER)进行的FTA得出的数据来预测两个人群的剂量。这两个人群都没有known暴露史。因此,假定两种暴露情况(急性和慢性)为估计剂量提供了界限。剂量预测着重于肺,肝和骨骼系统的等效剂量,其范围是器官,样品采集间隔和暴露类型的函数,范围为0.01 mSv至560 mSv。另外,这些重建证明剂量计算对样品收集时间和暴露持续时间的敏感性。如对于Y类粒子所预期的那样,肺部的预测平均等效组织剂量代表了评估室的最高剂量。此外,数据暗示,与同等照射场景中没有接触史的放射工作者相比,普通人群所接受的剂量要低一个数量级。

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