Zhou Hongmei, Su Zhentao, Ning Jing, Wang Changzhen, Xie Xiangdong, Qu Decheng, Wu Ke, Zhang Xiaomin, Pan Jie, Yang Guoshan
Beijing institute of radiation medicine, Beijing 100850, China.
Beijing institute of radiation medicine, Beijing 100850, China
Radiat Prot Dosimetry. 2014 Dec;162(4):463-8. doi: 10.1093/rpd/nct357. Epub 2014 Jan 6.
The power absorbed by the human brain has possible implications in the study of the central nervous system-related biological effects of electromagnetic fields. In order to determine the specific absorption rate (SAR) of radio frequency (RF) waves in the human brain, and to investigate the effects of geometry and polarisation on SAR value, the finite-difference time-domain method was applied for the SAR computation. An anatomically realistic model scaled to a height of 1.70 m and a mass of 63 kg was selected, which included 14 million voxels segmented into 39 tissue types. The results suggested that high SAR values were found in the brain, i.e. ∼250 MHz for vertical polarisation and 900-1200 MHz both for vertical and horizontal polarisation, which may be the result of head resonance at these frequencies.
人脑吸收的功率在研究电磁场与中枢神经系统相关的生物效应方面可能具有重要意义。为了确定射频(RF)波在人脑中的比吸收率(SAR),并研究几何形状和极化对SAR值的影响,采用时域有限差分法进行SAR计算。选择了一个按比例缩放至身高1.70米、体重63千克的解剖学逼真模型,该模型包括1400万个体素,分为39种组织类型。结果表明,在大脑中发现了较高的SAR值,即垂直极化时约为250 MHz,垂直和水平极化时均为900 - 1200 MHz,这可能是这些频率下头部共振的结果。