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Characterisation of protracted low-level exposure to uranium in the workplace: A comparison of two approaches

机译:工作场所长期低水平铀暴露的特征:两种方法的比较

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摘要

Retrospective estimates of internal doses received by workers in the nuclear industry following intake of radionuclides, based on bioassay data, are a benchmark method in epidemiological studies. Nonetheless, full information relative to thousands of people included in an epidemiological cohort is rarely available, thus implying difficulties to estimate exposure precisely. To evaluate the cumulative exposure to uranium in a cohort of the AREVA NC Pierrelatte plant workers, we compared the epidemiological Job Exposure Matrix (JEM) method with the dosimetric method based on biological monitoring of exposure for 30 workers randomly selected within the cohort. A moderate to strong correlation was observed between the estimators resulting from the two approaches, thereby validating the JEM as a tool that can be used to characterise cumulative exposure to uranium in the cohort. In addition, this study showed that the JEM is a valuable complement to the interpretation of bioassy, (1) in providing information on exposure periods as well as on physical and chemical form of the radionuclides and (2) in compensating for the lack of exposure data regarding the very earliest periods. Combining the two methods may improve the precision in reconstructing cumulative exposure for epidemiological studies.
机译:根据生物测定数据,核工业工人摄入放射性核素后收到的内部剂量的回顾性估计是流行病学研究的基准方法。尽管如此,关于流行病学队列中成千上万的人的完整信息很少,因此暗示了准确估算暴露的难度。为了评估AREVA NC Pierrelatte工厂工人队列中的铀累积暴露量,我们比较了流行病学的工作暴露矩阵(JEM)方法和基于生物监测的剂量学方法,该方法是对队列中随机选择的30名工人进行的。观察到两种方法得出的估算值之间存在中等至强相关性,从而验证了JEM作为可用于表征该人群中铀累积暴露量的工具。此外,这项研究表明,JEM是对生物总成的解释的宝贵补充,(1)提供有关暴露时间以及放射性核素的物理和化学形式的信息,(2)弥补缺乏暴露的信息有关最早时期的数据。结合这两种方法可以提高为流行病学研究重建累积暴露的精度。

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  • 作者单位

    Institute of Radiological Protection and Nuclear Safety (IRSN), Ionizing Radiation Epidemiology Laboratory, BP 17 92262 Fontenay-aux-Roses, France;

    rnInstitute of Radiological Protection and Nuclear Safety (IRSN), Ionizing Radiation Epidemiology Laboratory, BP 17 92262 Fontenay-aux-Roses, France;

    rnInstitute of Radiological Protection and Nuclear Safety (IRSN), Ionizing Radiation Epidemiology Laboratory, BP 17 92262 Fontenay-aux-Roses, France;

    rnInstitute of Radiological Protection and Nuclear Safety (IRSN), Ionizing Radiation Epidemiology Laboratory, BP 17 92262 Fontenay-aux-Roses, France;

    rnInstitute of Radiological Protection and Nuclear Safety (IRSN), Ionizing Radiation Epidemiology Laboratory, BP 17 92262 Fontenay-aux-Roses, France;

    rnAREVA NC Plant in Pierrelatte, Occupational Health Department, France;

    rnCEA, DSV, Prositon Fontenay-aux-Roses, France;

    rnAREVA NC Plant in Pierrelatte, Occupational Health Department, France;

    rnCEA, Marcoule, France;

    rnIRSN, Internal Dose Assessment Laboratory, Fontenay-aux-Roses, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    epidemiology; internal dose; exposure assessment; nuclear workers; uranium;

    机译:流行病学内部剂量暴露评估;核工作者;铀;

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