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Energy Transmission Transformer for a Wireless Capsule Endoscope: Analysis of Specific Absorption Rate and Current Density in Biological Tissue

机译:无线胶囊内窥镜的能量传输变压器:生物组织中的比吸收率和电流密度分析

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This paper reports on the electromagnetic influences on the analysis of biological tissue surrounding a prototype energy transmission system for a wireless capsule endoscope. Specific absorption rate (SAR) and current density were analyzed by electromagnetic simulator in a model consisting of primary coil and a human trunk including the skin, fat, muscle, small intestine, backbone, and blood. First, electric and magnetic strength in the same conditions as the analytical model were measured and compared to the analytical values to confirm the validity of the analysis. Then, SAR and current density as a function of frequency and output power were analyzed. The validity of the analysis was confirmed by comparing the analytical values with the measured ones. The SAR was below the basic restrictions of the International Commission on Nonionizing Radiation Protection (ICNIRP). At the same time, the results for current density show that the influence on biological tissue was lowest in the 300–400 kHz range, indicating that it was possible to transmit energy safely up to 160 mW. In addition, we confirmed that the current density has decreased by reducing the primary coil''''s current.
机译:本文报道了电磁波对无线胶囊内窥镜原型能量传输系统周围生物组织分析的影响。通过电磁模拟器在由初级线圈和包括皮肤,脂肪,肌肉,小肠,主干和血液的人体躯干组成的模型中分析比吸收率(SAR)和电流密度。首先,在与分析模型相同的条件下测量电强度和磁强度,并将其与分析值进行比较,以确认分析的有效性。然后,分析了SAR和电流密度与频率和输出功率的关系。通过将分析值与测量值进行比较,可以确认分析的有效性。 SAR低于国际非电离辐射防护委员会(ICNIRP)的基本限制。同时,电流密度的结果表明,对生物组织的影响在300-400 kHz范围内最低,表明可以安全地传输高达160 mW的能量。此外,我们确认通过减小初级线圈的电流可以降低电流密度。

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