INTEROCC研究中电磁场职业暴露评估的基于源的测量数据库:文献综述方法。

Annals of Occupational Hygiene Pub Date : 2016-03-01 Epub Date: 2015-10-21 DOI:10.1093/annhyg/mev076
Javier Vila, Joseph D Bowman, Lesley Richardson, Laurel Kincl, Dave L Conover, Dave McLean, Simon Mann, Paolo Vecchia, Martie van Tongeren, Elisabeth Cardis
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引用次数: 23

摘要

迄今为止,电磁场(EMF)的职业暴露评估依赖于基于职业的测量和暴露估计。然而,由于工作者之间的差异造成的错误分类仍然是一个未解决的挑战。以来源为基础的方法,在有关暴露决定因素的详细受试者数据的支持下,可能允许进行更加个性化的暴露评估。作为INTERPHONE-INTEROCC研究的一部分,收集了有关电磁场职业性暴露源使用的详细信息。为了支持本研究中基于源的暴露评估工作,本工作旨在为已确定的EMF暴露职业源构建一个测量数据库,收集科学文献中的可用测量值。方法:首先,对已发表和未发表的文件进行全面的文献检索,这些文件包含已确定的EMF源的暴露测量,先验的以及研究对象的回答。然后,评估确定的测量的质量和与研究目标的相关性。最后,将选择的测量值和补充信息汇编成职业暴露测量数据库(OEMD)。结果:目前,OEMD包含对285个EMF暴露源的1624组测量(>3000项),按频段(0 Hz至300 GHz)和剂量学类型进行组织。从文献中选择了95份文件(其中近35%是未发表的技术报告),其中包含了对我们的目的有用且有效的测量。从这些文件中收集的测量数据和补充信息来自16个不同的国家,涵盖了1974年至2013年的时间段。结论:根据INTERPHONE-INTEROCC研究问卷的回答,我们建立了一个数据库,其中包含了工作场所中最常见的电磁场暴露源的测量结果和补充信息。该数据库涵盖整个EMF频率范围,是关于职业EMF暴露的最全面的信息资源。可以在www.crealradiation.com/index.php/en/databases上找到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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A Source-based Measurement Database for Occupational Exposure Assessment of Electromagnetic Fields in the INTEROCC Study: A Literature Review Approach.

Introduction: To date, occupational exposure assessment of electromagnetic fields (EMF) has relied on occupation-based measurements and exposure estimates. However, misclassification due to between-worker variability remains an unsolved challenge. A source-based approach, supported by detailed subject data on determinants of exposure, may allow for a more individualized exposure assessment. Detailed information on the use of occupational sources of exposure to EMF was collected as part of the INTERPHONE-INTEROCC study. To support a source-based exposure assessment effort within this study, this work aimed to construct a measurement database for the occupational sources of EMF exposure identified, assembling available measurements from the scientific literature.

Methods: First, a comprehensive literature search was performed for published and unpublished documents containing exposure measurements for the EMF sources identified, a priori as well as from answers of study subjects. Then, the measurements identified were assessed for quality and relevance to the study objectives. Finally, the measurements selected and complementary information were compiled into an Occupational Exposure Measurement Database (OEMD).

Results: Currently, the OEMD contains 1624 sets of measurements (>3000 entries) for 285 sources of EMF exposure, organized by frequency band (0 Hz to 300 GHz) and dosimetry type. Ninety-five documents were selected from the literature (almost 35% of them are unpublished technical reports), containing measurements which were considered informative and valid for our purpose. Measurement data and complementary information collected from these documents came from 16 different countries and cover the time period between 1974 and 2013.

Conclusion: We have constructed a database with measurements and complementary information for the most common sources of exposure to EMF in the workplace, based on the responses to the INTERPHONE-INTEROCC study questionnaire. This database covers the entire EMF frequency range and represents the most comprehensive resource of information on occupational EMF exposure. It is available at www.crealradiation.com/index.php/en/databases.

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