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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Comparable Investigation of Characteristics for Implant Intra-Body Communication Based on Galvanic and Capacitive Coupling
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Comparable Investigation of Characteristics for Implant Intra-Body Communication Based on Galvanic and Capacitive Coupling

机译:基于电流和电容耦合的植入物体内通信特性的可比性研究

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摘要

Implanted devices have important applications in biomedical monitoring, diagnosis and treatment, where intra-body communication (IBC) has a decent prospect in wireless implant communication technology by using the conductive properties of the human body to transmit a signal. Most of the investigations on implant IBC are focused on galvanic coupling type. Capacitive coupling IBC device seems hard to implant, because the ground electrode of it seemingly has to be exposed to air. Zhang etal. previously proposed an implantable capacitive coupling electrode, which can be totally implanted into the human body [1], but it lacks an overall characteristic investigation. In this paper, a comparable investigation of characteristics for implant intra-body communication based on galvanic and capacitive coupling is conducted. The human arm models are established by finite element method. Meanwhile, aiming to improve the accuracy of the model, electrode polarization impedance (EPI) is incorporated into the model, and the influences of electrode polarization impedance on simulation results are also analyzed. Subsequently, the corresponding measurements using porcine are conducted. We confirm good capacitive coupling communication performances can be achieved. Moreover, some important conclusions have been included by contrastive analysis, which can be used to optimize implant intra-body communication devices performance and provide some hints for practical IBC design. The conclusions also indicate that the implant IBC has promising prospect in healthcare and other related fields.
机译:植入装置具有在生物医学监测,诊断和治疗中具有重要应用,其中内部通信(IBC)通过使用人体的导电性能来传输信号的无线植入通信技术具有体面的前景。大多数对植入IBC的调查专注于电催化型。电容耦合IBC器件似乎难以植入,因为它的接地电极似乎必须暴露在空气中。张素。以前提出了一种可植入的电容耦合电极,可以完全植入人体[1],但它缺乏整体特征调查。在本文中,进行了基于电流耦合的基于电容耦合的植入体内通信特性的可比研究。人臂模型由有限元方法建立。同时,旨在提高模型的准确性,还分析了电极偏振阻抗(EPI),并分析了电极极化阻抗对模拟结果的影响。随后,进行使用猪的相应测量。我们确认了良好的电容耦合通信性能。此外,对比分析包括一些重要的结论,可用于优化植入物内部通信设备性能,并为实用IBC设计提供一些提示。结论还表明,植入物IBC在医疗保健和其他相关领域具有很有希望的前景。

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