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Analysis of Current Density and Specific Absorption Rate in Biological Tissue Surrounding an Air-core Type of Transcutaneous Transformer for an Artificial Heart

机译:一种人工心脏空心型变压器空心型围绕生物组织电流密度和特定吸收率的分析

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This paper reports on the specific absorption rate (SAR) and the current density analysis of biological tissue surrounding an air-core type of transcutaneous transformer for an artificial heart. The electromagnetic field in the biological tissue surrounding the transformer was analyzed by the transmission-line modeling method, and the SAR and current density as a function of frequency (200k-1MHz) for a transcutaneous transmission of 20W were calculated. The model's biological tissue has three layers including the skin, fat and muscle. As a result, the SAR in the vicinity of the transformer is sufficiently small and the normalized SAR value, which is divided by the ICNIRP's basic restriction, is 7×10{sup}-3 or less. On the contrary, the current density is slightly in excess of the ICNIRP's basic restrictions as the frequency falls and the output voltage rises. Normalized current density is from 0.2 to 1.2. In addition, the layer in which the current's density is maximized depends on the frequency, the muscle in the low frequency (<700kHz) and the skin in the high frequency (>700kHz). The result shows that precision analysis taking into account the biological properties is very important for developing the transcutaneous transformer for TAH.
机译:此对特定吸收率(SAR)和周围皮变压器的用于人造心脏的空芯型生物组织的电流密度分析纸的报告。在围绕变压器的生物组织的电磁场是由传输线建模方法,和SAR和电流密度作为频率(200K-1MHz的),用于计算20W的经皮透过的功能进行分析。该模型的生物组织有三层,包括皮肤,脂肪和肌肉。其结果是,特别行政区在变压器的附近足够小和归一化SAR值,这是由ICNIRP的基本限制分割,为7×10 {SUP} -3或更小。相反,电流密度稍微超过了ICNIRP的基本限制的频率降低,输出电压上升。归一化的电流密度为0.2〜1.2。此外,在其中电流的密度最大化的层取决于频率,在低频(肌肉<700kHz的),并在高频皮肤(> 700kHz的)。结果表明,精度分析考虑到生物学特性是用于开发TAH经皮变压器非常重要的。

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