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使用随机剂量学研究组织电导率对50Hz极低频磁场胎儿暴露的影响。

Influence of tissue conductivity on foetal exposure to extremely low frequency magnetic fields at 50 Hz using stochastic dosimetry.

作者信息

Fiocchi Serena, Chiaramello Emma, Parazzini Marta, Ravazzani Paolo

机构信息

CNR Consiglio Nazionale delle Ricerche, Istituto di Elettronica e di Ingegneria dell'Informazione e delle Telecomunicazioni IEIIT, Milan, Italy.

出版信息

PLoS One. 2018 Feb 7;13(2):e0192131. doi: 10.1371/journal.pone.0192131. eCollection 2018.

Abstract

Human exposure to extremely low frequency magnetic fields (ELF-MF) at 50 Hz is still a topic of great interest due to the possible correlation with childhood leukaemia. The estimation of induced electric fields in human tissues exposed to electromagnetic fields (EMFs) strictly depends on several variables which include the dielectric properties of the tissues. In this paper, the influence of the conductivity assignment to foetal tissues at different gestational ages on the estimation of the induced electric field due to ELF-MF exposure at 50 Hz has been quantified by means of a stochastic approach using polynomial chaos theory. The range of variation in conductivity values for each foetal tissue at each stage of pregnancy have been defined through three empirical approaches and the induced electric field in each tissue has been modelled through stochastic dosimetry. The main results suggest that both the peak and median induced electric fields in foetal fat vary by more than 8% at all gestational ages. On the contrary, the electric field induced in foetal brain does not seem to be significantly affected by conductivity data changes. The maximum exposure levels, in terms of the induced electric field found in each specific tissue, were found to be significantly below the basic restrictions indicated in the ICNIRP Guidelines, 2010.

摘要

由于可能与儿童白血病相关,人类暴露于50赫兹的极低频磁场(ELF-MF)仍是一个备受关注的话题。暴露于电磁场(EMF)的人体组织中感应电场的估计严格取决于几个变量,其中包括组织的介电特性。在本文中,已通过使用多项式混沌理论的随机方法量化了不同胎龄胎儿组织的电导率赋值对50赫兹ELF-MF暴露所致感应电场估计的影响。已通过三种经验方法确定了怀孕各阶段每个胎儿组织电导率值的变化范围,并通过随机剂量学对每个组织中的感应电场进行了建模。主要结果表明,在所有胎龄下,胎儿脂肪中的感应电场峰值和中值变化均超过8%。相反,胎儿大脑中感应的电场似乎不受电导率数据变化的显著影响。就每个特定组织中发现的感应电场而言,最大暴露水平被发现明显低于2010年国际非电离辐射防护委员会(ICNIRP)指南中规定的基本限制。

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