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Single-wire RF transmission lines for implanted devices

机译:用于植入设备的单线RF传输线

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We consider the use of insulated single wires as transmission lines to carry 100 MHz – 3 GHz radio frequency (RF) signals among devices implanted in biological tissue. In contrast to near-field magnetically coupled links, the use of transmission lines to carry RF signals results in higher efficiency for a given implant package size once the antenna is included, albeit with the disadvantage of tissue displacement along the path of the wire. We present a theory based on the work of Goubau and Rao that describes the transmission line loss of a single insulated wire in a lossy dielectric medium. We experimentally verify the characteristic impedance and insertion loss of transmission lines formed by thin wires insulated with Teflon fluorinated ethylene propylene (FEP). We consider media including 0.91% saline (a homogeneous tissue proxy), muscle tissue, and brain tissue, and present a launcher design based on a dielectric loaded coaxial sleeve. For example, in the saline proxy, a single FEP-insulated conductor of only 0.127 mm diameter presents a measured return loss of 10 dB in a 50Ω system, with a measured insertion loss of only 1 dB/cm at 1 GHz.
机译:我们考虑将绝缘单线用作传输线,以在植入生物组织的设备之间传输100 MHz – 3 GHz射频(RF)信号。与近场磁耦合链路相反,一旦包含天线,对于给定的植入物封装尺寸,使用传输线传输RF信号会产生更高的效率,尽管这具有组织沿导线路径位移的缺点。我们基于Goubau和Rao的工作提出了一种理论,该理论描述了有损耗电介质中单根绝缘电线的传输线损耗。我们通过实验验证了由特氟隆氟化乙烯丙烯(FEP)绝缘的细线形成的传输线的特性阻抗和插入损耗。我们考虑包括0.91%的盐水(均质组织替代物),肌肉组织和脑组织的介质,并提出了一种基于加载了电介质的同轴套筒的发射器设计。例如,在盐溶液中,一根直径仅为0.127 mm的FEP绝缘导体在50?系统中测得的回波损耗为10 dB,在1 GHz时测得的插入损耗仅为1 dB / cm。

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