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Radiation Efficiency of Implanted Antennas: Evaluation of Antenna Encapsulation and Position in Different Canonical Body Models

机译:植入天线的辐射效率:不同规范模型中天线封装和位置的评估

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In-body implanted antennas are one of essential components of various medical devices being developed in order to help in monitoring patient’s condition more directly. Human body is, however, a very hostile environment from electromagnetic point of view, since the body, when viewed as dielectric medium, has very high losses. To study how this effects the radiation properties, in this paper we focus on the analysis of radiation efficiency as a function of the size and the position of the implant inside the body. We compare two scenarios where the body is approximated with spherical and cylindrical body models which are commonly used in similar investigations. Results confirm that in both scenarios the size and the position of the implant have a major effect on the efficiency, however, the observations have to take into account the frequency since different loss mechanisms dominate for different frequencies.
机译:体内植入天线是正在开发的各种医疗设备的重要组成部分之一,以帮助更直接地监视患者的状况。然而,从电磁的观点来看,人体是非常不利的环境,因为当被视为电介质时,人体具有非常高的损耗。为了研究这对辐射特性的影响,在本文中,我们着重分析辐射效率与植入物在体内的大小和位置的关系。我们比较了两种情况下的人体近似球形和圆柱形人体模型,而球形和圆柱形人体模型通常用于类似的研究中。结果证实,在两种情况下,植入物的尺寸和位置都会对效率产生重大影响,但是,由于不同的损耗机制主导着不同的频率,因此必须将频率考虑在内。

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