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Temperature elevation in the eye of anatomically based human head models for plane-wave exposures

机译:基于解剖学的人体头部模型在平面波照射下眼睛的温度升高

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This study investigated the temperature elevation in the eye of anatomically based human head models for plane-wave exposures. The finite-difference time-domain method is used for analyzing electromagnetic absorption and temperature elevation. The eyes in the anatomic models have average dimensions and weight. Computational results show that the ratio of maximum temperature in the lens to the eye-average SAR (named 'heating factor for the lens') is almost uniform (0.112-0.147 degrees C kg W-1) in the frequency region below 3 GHz. Above 3 GHz, this ratio increases gradually with an increase of frequency, which is attributed to the penetration depth of an electromagnetic wave. Particular attention is paid to the difference in the heating factor for the lens between this study and earlier works. Considering causes clarified in this study, compensated heating factors in all these studies are found to be in good agreement.
机译:这项研究调查了基于解剖学的人体头部模型在平面波照射下眼睛的温度升高。时域有限差分法用于分析电磁吸收和温度升高。解剖模型中的眼睛具有平均大小和重量。计算结果表明,在3 GHz以下的频率区域中,镜片的最高温度与人眼平均SAR的比(称为“镜片的加热因子”)几乎是均匀的(0.112-0.147摄氏度kg W-1)。在3 GHz以上,该比率随频率的增加而逐渐增加,这归因于电磁波的穿透深度。特别要注意的是这项研究与早期工作之间的镜片加热因子的差异。考虑到本研究中阐明的原因,在所有这些研究中发现补偿的加热因子非常吻合。

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