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基于城市地区个人暴露数据的国家间全身比吸收率比较。

Between-country comparison of whole-body SAR from personal exposure data in Urban areas.

作者信息

Joseph Wout, Frei Patrizia, Röösli Martin, Vermeeren Günter, Bolte John, Thuróczy György, Gajšek Peter, Trček Tomaž, Mohler Evelyn, Juhász Péter, Finta Viktoria, Martens Luc

机构信息

Department of Information Technology, Ghent University/IBBT, Ghent, Belgium.

出版信息

Bioelectromagnetics. 2012 Dec;33(8):682-94. doi: 10.1002/bem.21737. Epub 2012 Jun 1.

DOI:10.1002/bem.21737
PMID:22674152
Abstract

In five countries (Belgium, Switzerland, Slovenia, Hungary, and the Netherlands), personal radio frequency electromagnetic field measurements were performed in different microenvironments such as homes, public transports, or outdoors using the same exposure meters. From the mean personal field exposure levels (excluding mobile phone exposure), whole-body absorption values in a 1-year-old child and adult male model were calculated using a statistical multipath exposure method and compared for the five countries. All mean absorptions (maximal total absorption of 3.4 µW/kg for the child and 1.8 µW/kg for the adult) were well below the International Commission on Non-Ionizing Radiation Protection (ICNIRP) basic restriction of 0.08 W/kg for the general public. Generally, incident field exposure levels were well correlated with whole-body absorptions (SAR(wb) ), although the type of microenvironment, frequency of the signals, and dimensions of the considered phantom modify the relationship between these exposure measures. Exposure to the television and Digital Audio Broadcasting band caused relatively higher SAR(wb) values (up to 65%) for the 1-year-old child than signals at higher frequencies due to the body size-dependent absorption rates. Frequency Modulation (FM) caused relatively higher absorptions (up to 80%) in the adult male.

摘要

在五个国家(比利时、瑞士、斯洛文尼亚、匈牙利和荷兰),使用相同的暴露测量仪在不同的微环境中进行了个人射频电磁场测量,这些微环境包括家庭、公共交通工具或户外。根据平均个人场暴露水平(不包括手机暴露),采用统计多径暴露方法计算了1岁儿童和成年男性模型中的全身吸收值,并对这五个国家的结果进行了比较。所有平均吸收值(儿童的最大总吸收值为3.4 µW/kg,成人为1.8 µW/kg)均远低于国际非电离辐射防护委员会(ICNIRP)对公众规定的0.08 W/kg的基本限制。一般来说,入射场暴露水平与全身吸收值(SAR(wb))密切相关,尽管微环境类型、信号频率以及所考虑人体模型的尺寸会改变这些暴露测量值之间的关系。由于与身体尺寸相关的吸收率,1岁儿童接触电视和数字音频广播频段时的SAR(wb)值相对较高(高达65%),高于高频信号。调频(FM)在成年男性中导致相对较高的吸收值(高达80%)。

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