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手机类型与人脑的比吸收率特性

Mobile phone types and SAR characteristics of the human brain.

作者信息

Lee Ae-Kyoung, Hong Seon-Eui, Kwon Jong-Hwa, Choi Hyung-Do, Cardis Elisabeth

机构信息

Radio Technology Research Department, Electronics and Telecommunications Research Institute (ETRI), 218 Gajeong-ro, Yuseong-gu, Daejeon 34129, Republic of Korea.

出版信息

Phys Med Biol. 2017 Apr 7;62(7):2741-2761. doi: 10.1088/1361-6560/aa5c2d. Epub 2017 Mar 7.

Abstract

Mobile phones differ in terms of their operating frequency, outer shape, and form and location of the antennae, all of which affect the spatial distributions of their electromagnetic field and the level of electromagnetic absorption in the human head or brain. For this paper, the specific absorption rate (SAR) was calculated for four anatomical head models at different ages using 11 numerical phone models of different shapes and antenna configurations. The 11 models represent phone types accounting for around 86% of the approximately 1400 commercial phone models released into the Korean market since 2002. Seven of the phone models selected have an internal dual-band antenna, and the remaining four possess an external antenna. Each model was intended to generate an average absorption level equivalent to that of the same type of commercial phone model operating at the maximum available output power. The 1 g peak spatial SAR and ipsilateral and contralateral brain-averaged SARs were reported for all 11 phone models. The effects of the phone type, phone position, operating frequency, and age of head models on the brain SAR were comprehensively determined.

摘要

手机在工作频率、外形以及天线的形式和位置方面存在差异,所有这些都会影响其电磁场的空间分布以及人体头部或大脑中的电磁吸收水平。在本文中,使用11种不同形状和天线配置的数字手机模型,针对四个不同年龄的解剖学头部模型计算了比吸收率(SAR)。这11个模型代表的手机类型占自2002年以来投放韩国市场的约1400款商用手机模型的约86%。所选的7款手机模型具有内置双频天线,其余4款则拥有外置天线。每个模型旨在产生与以最大可用输出功率运行的同类型商用手机模型相当的平均吸收水平。报告了所有11款手机模型的1g峰值空间SAR以及同侧和对侧大脑平均SAR。全面确定了手机类型、手机位置、工作频率和头部模型年龄对大脑SAR的影响。

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