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用于无导线起搏器的体内通信的宽频特性分析

Wide Frequency Characterization of Intra-Body Communication for Leadless Pacemakers.

作者信息

Maldari Mirko, Albatat Mohammad, Bergsland Jacob, Haddab Youcef, Jabbour Chadi, Desgreys Patricia

出版信息

IEEE Trans Biomed Eng. 2020 Nov;67(11):3223-3233. doi: 10.1109/TBME.2020.2980205. Epub 2020 Mar 12.

Abstract

Leadless Cardiac Pacemakers (LCP) have the potential to revolutionize Cardiac Rhythm Management (CRM). Current LCPs can only pace a single location of the heart limiting their use to patients requiring single-chamber stimulation. A Multi-node system of synchronized LCPs could be used in a significantly larger patient population. Synchronization using standard communication techniques involves high power consumption decreasing the longevity of the device. In this work, we investigate Galvanic Intra Body Communication (IBC) as a method to synchronize multi-node LCP systems. First, an accurate computational torso model was used for quasi-static simulations to estimate channel pathloss in the frequency range [40 kHz-20 MHz]. The model was then verified with in-vivo measurements using a novel experimental setup, where two LCP devices were placed in the right atrium, right ventricle and left ventricle. All channels involved in a potential multi-node LCP system were characterized. The orientation of the transducers relative to each other had a great impact on the results, with the attenuation level ranging between 55 dB and 70 dB between the best and worst orientations. The best results were achieved in the MHz range. Coupled with the fact that it does not require additional electrodes, this study suggests Galvanic IBC be superior to conventional communication methods for LCP devices. This analysis defines a methodology for galvanic IBC channel characterization for LCP systems, which is an important step for the design of efficient transceivers for IBC applications. More experiments with larger datasets are needed to bring this method to practice.

摘要

无导线心脏起搏器(LCP)有潜力彻底改变心脏节律管理(CRM)。目前的无导线心脏起搏器只能对心脏的单个位置进行起搏,限制了其在仅需要单腔刺激的患者中的应用。同步无导线心脏起搏器的多节点系统可用于更多患者群体。使用标准通信技术进行同步会导致高功耗,从而缩短设备使用寿命。在这项工作中,我们研究了利用人体电通信(IBC)来同步多节点无导线心脏起搏器系统。首先,使用精确的计算躯干模型进行准静态模拟,以估计频率范围在[40 kHz - 20 MHz]内的信道路径损耗。然后使用一种新颖的实验装置通过体内测量对该模型进行验证,在该装置中,将两个无导线心脏起搏器设备分别置于右心房、右心室和左心室。对潜在的多节点无导线心脏起搏器系统中涉及的所有信道进行了特性分析。换能器彼此之间的方向对结果有很大影响,最佳和最差方向之间的衰减水平在55 dB至70 dB之间。在兆赫兹范围内取得了最佳结果。鉴于其不需要额外电极,本研究表明人体电通信对于无导线心脏起搏器设备优于传统通信方法。该分析定义了一种用于无导线心脏起搏器系统人体电通信信道特性分析的方法,这是为人体电通信应用设计高效收发器的重要一步。需要用更大的数据集进行更多实验才能将此方法付诸实践。

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