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FDTD computation of temperature elevation in the head model due to dipole antenna with measured blood flow rate

机译:偶极子天线测得的血流速率导致头部模型中温度升高的FDTD计算

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The present study investigates the microwave-induced temperature elevation in a Japanese human head model named TARO, for frequencies ranging from 1 to 12 GHz. A half-wave dipole antenna is considered as a wave source at respective frequencies. Bioheat equation is solved to compute the temperature elevation caused by microwave absorption. Measured blood flow rate in the head was incorporated in the computation to discuss the individual variability of temperature elevation. Computational results show the variability of the maximum temperature elevation in the head due to the blood flow rate was ±30%.
机译:本研究调查了日本人头部模型TARO中微波诱导的温度升高,其频率范围为1至12 GHz。半波偶极子天线被认为是各个频率上的波源。求解生物热方程,以计算由微波吸收引起的温度升高。将头部中测得的血液流速纳入计算中,以讨论温度升高的个体变异性。计算结果表明,由于血流量为±30%,导致头部最高温度升高的变异性。

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