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The Revised Electromagnetic Fields Directive and Worker Exposure in Environments With High Magnetic Flux Densities

机译:高磁通密度环境中修订的电磁场指令和工作人员暴露

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摘要

Some of the strongest electromagnetic fields (EMF) are found in the workplace. A European Directive sets limits to workers’ exposure to EMF. This review summarizes its origin and contents and compares magnetic field exposure levels in high-risk workplaces with the limits set in the revised Directive. Pubmed, Scopus, grey literature databases, and websites of organizations involved in occupational exposure measurements were searched. The focus was on EMF with frequencies up to 10 MHz, which can cause stimulation of the nervous system. Selected studies had to provide individual maximum exposure levels at the workplace, either in terms of the external magnetic field strength or flux density or as induced electric field strength or current density. Indicative action levels and the corresponding exposure limit values for magnetic fields in the revised European Directive will be higher than those in the previous version. Nevertheless, magnetic flux densities in excess of the action levels for peripheral nerve stimulation are reported for workers involved in welding, induction heating, transcranial magnetic stimulation, and magnetic resonance imaging (MRI). The corresponding health effects exposure limit values for the electric fields in the worker’s body can be exceeded for welding and MRI, but calculations for induction heating and transcranial magnetic stimulation are lacking. Since the revised European Directive conditionally exempts MRI-related activities from the exposure limits, measures to reduce exposure may be necessary for welding, induction heating, and transcranial nerve stimulation. Since such measures can be complicated, there is a clear need for exposure databases for different workplace scenarios with significant EMF exposure and guidance on good practices.
机译:在工作场所中发现了一些最强的电磁场(EMF)。欧洲指令对工人接触电磁场设定了限制。审查总结了其来源和内容,并将高风险工作场所中的磁场暴露水平与修订的指令中设定的限值进行了比较。搜索Pubmed,Scopus,灰色文献数据库以及参与职业接触测量的组织的网站。重点是频率高达10 MHz的EMF,它可能会刺激神经系统。选定的研究必须根据工作场所的外部磁场强度或磁通量密度或感应电场强度或电流密度来提供个体最大暴露水平。修订后的《欧洲指令》中的指示性作用水平和相应的磁场暴露极限值将高于以前的版本。然而,据报道,从事焊接,感应加热,经颅磁刺激和磁共振成像(MRI)的工人的磁通密度超过了周围神经刺激作用水平。焊接和MRI可能会超过相应的人体电场健康影响暴露极限值,但缺少感应加热和经颅磁刺激的计算方法。由于修订后的《欧洲指令》有条件地将MRI相关活动从暴露极限中排除,因此对于焊接,感应加热和经颅神经刺激,可能需要采取减少暴露的措施。由于这些措施可能很复杂,因此显然需要针对具有不同的EMF暴露和良好实践指南的不同工作场所场景的暴露数据库。

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