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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Effects of frequency, permittivity, and voxel size on predicted specific absorption rate values in biological tissue during electromagnetic-field exposure
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Effects of frequency, permittivity, and voxel size on predicted specific absorption rate values in biological tissue during electromagnetic-field exposure

机译:频率,介电常数和体素大小对电磁场暴露期间生物组织中预测的比吸收率值的影响

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摘要

Current electromagnetic-field (EMF) exposure limits have been based, in part, on the amount of energy absorbed by the whole body. However, it is known that energy is absorbed nonuniformly during EMF exposure. The development and widespread use of sophisticated three-dimensional anatomical models to calculate specific-absorption-rate (SAR) values in biological material has resulted in the need to understand how model parameters affect predicted SAR values. This paper demonstrate the effects of manipulating frequency, permittivity values, and voxel size on SAR values calculated by a finite-difference time-domain program in digital homogenous sphere models and heterogeneous models of rat and man. The predicted SAR values are compared to empirical data from infrared thermography and implanted temperature probes.
机译:当前的电磁场(EMF)暴露极限部分基于整个身体吸收的能量。然而,已知在EMF暴露期间能量吸收不均匀。复杂的三维解剖模型的发展和广泛使用以计算生物材料中的比吸收率(SAR)值,导致需要了解模型参数如何影响预测的SAR值。本文演示了在数字均质球模型和大鼠和人异质模型中,通过有限差分时域程序计算的频率,介电常数和体素大小对SAR值的影响。将预测的SAR值与来自红外热像仪和植入式温度探头的经验数据进行比较。

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