首页> 外文会议>Engineering in Medicine and Biology Society, 2003. Proceedings of the 25th Annual International Conference of the IEEE >Application of the reciprocity theorem to volume conduction based data communication systems between implantable devices and computers
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Application of the reciprocity theorem to volume conduction based data communication systems between implantable devices and computers

机译:互易定理在可植入设备与计算机之间基于体积传导的数据通信系统中的应用

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There have been increasing needs for a wireless two-way information channel between computers and microdevices implanted within the human body. It has been demonstrated that this channel can be established based on the volume conduction property of the biological tissue. This paper presents a fundamental property of the volume conduction channel. By applying the reciprocity theorem to this channel, we show that it is a symmetric channel, i.e., the sensitivity of signal transmission is independent of the direction of information flow. We discuss several important factors in actual data communication systems that produce discrepancies from the assumptions of the reciprocity theorem. We also present experimental results based on a physically constructed volume conduction model. The reciprocity property demonstrated in this paper provides theoretical guidelines for the design of volume conduction based, energy-efficient data communication modules for various implantable devices.
机译:在计算机和植入人体的微型设备之间对无线双向信息通道的需求日益增长。已经证明可以基于生物组织的体积传导特性来建立该通道。本文介绍了体积传导通道的基本特性。通过将互易性定理应用于该信道,我们表明它是一个对称信道,即,信号传输的灵敏度与信息流的方向无关。我们讨论了实际数据通信系统中的一些重要因素,这些因素根据互易定理的假设会产生差异。我们还介绍了基于物理构造的体积传导模型的实验结果。本文演示的互惠性为各种可植入设备的基于体积传导的节能数据通信模块的设计提供了理论指导。

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