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Capacitive-Coupling-Based Information Transmission System for Implantable Devices: Investigation of Transmission Mechanism

机译:基于电容耦合的植入式设备信息传输系统:传输机制研究

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Many medical electronic devices that can be implanted deep inside the body have been developed recently. These devices are designed to transmit the information that is collected inside the body to receiving antennas outside the body. In this work, we examine a method that uses a high-frequency current in the transmitting electrodes of the implanted device for the transmission of information to receiving electrodes attached to the body surface. To investigate the transmission mechanism and the factors that determines the optimum frequency, the output voltage $V_{2}$ and the input and output impedance ( $Z_{rm in}$ and $Z_{rm out}$) were analyzed by conducting a finite-difference time-domain electromagnetic simulation. The results clearly show that the receiving part (electrodes and wire), including biological tissue, acts as a loop antenna. The maximum $V_{2}$ value was obtained at the first parallel resonance frequency of $Z_{rm out}$ at 370 MHz under a load resistance of 1 ${rm M}Omega$. In contrast, the output current of the source increased at the series resonance frequency of $Z_{rm in}$. The series resonance frequency could be adjusted to move a target frequency by adding an inductance between the source and the transmitting electrodes.
机译:最近已经开发了许多可以植入体内深处的医疗电子设备。这些设备旨在将体内收集的信息传输到体外的接收天线。在这项工作中,我们研究了一种方法,该方法在植入设备的发射电极中使用高频电流,将信息传输到附着在身体表面的接收电极上。为了研究传输机制和确定最佳频率的因素,通过进行分析输出电压$ V_ {2} $以及输入和输出阻抗($ Z_ {rm in} $和$ Z_ {rm out} $)时域有限差分电磁仿真。结果清楚地表明,包括生物组织在内的接收部分(电极和电线)充当环形天线。最大的$ V_ {2} $值是在负载电阻为1 $ {rm M}Ω时,在370 MHz处的第一个并联谐振频率$ Z_ {rm out} $处获得的。相反,源的输出电流在串联谐振频率$ Z_ {rm in} $时增加。通过在源极和发射电极之间增加电感,可以调整串联谐振频率以移动目标频率。

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