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Equivalent Heart Model for Intracardiac Communication Channel Analysis

机译:心内通信信道分析的等效心脏模型

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In order to construct a multi-node leadless cardiac pacemaker system based on galvanic coupled intra-body communication, the intracardiac communication channel should be analyzed. In this paper, an equivalent heart model is proposed to estimate the characteristics of intracardiac communication channels in the frequency range of 10kHz-10MHz. The model contains only two layers of tissue: blood and heart muscle, and four chambers are divided inside. Then the model is combined with the circuits, which are equivalent to the input and output impedance of the measuring equipment. The finite element method is used to calculate the model. The simulation results show that the attenuation fluctuation of intracardiac communication channel is very small, and the attenuation is almost independent of frequency. The measurement results are in good agreement with the simulation results. This work provides a new idea of heart modeling.
机译:为了构建基于电流耦合的体内通信的多节点无引用心脏起搏器系统,应分析心内通信通道。本文提出了一种等同的心脏模型来估计10kHz-10MHz频率范围内的心内通信通道的特征。该模型仅包含两层组织:血液和心肌,和四个腔室划分在内。然后,该模型与电路相同,其等同于测量设备的输入和输出阻抗。有限元方法用于计算模型。仿真结果表明,心内通信通道的衰减波动非常小,衰减几乎与频率无关。测量结果与模拟结果吻合良好。这项工作提供了一种新的心脏建模概念。

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