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Wireless Channel Modeling for Leadless Cardiac Pacemaker: Effects of Ventricular Blood Volume

机译:无铅心脏起搏器的无线频道建模:心室血容量的影响

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In this paper, the effects of ventricular blood volume change on the cardiac wireless channel modeling at 2.4 GHz are presented for future multi-node leadless capsule pacemakers. Numerical electromagnetic simulations are implemented in the anatomical model of human body and experiments are done in a homogeneous liquid phantom. The results show that the coupling between the capsule antennas decreases with increasing blood volume, as the blood is a highly attenuating medium. The received power varies by 3.1 dB for the implant-to-implant link inside the heart and varies by 1.3 dB for the heart implant to sub-cutaneous implant, during the diastole and systole cycle. The findings are useful to develop an intra-body communication between leadless pacemakers providing timing information for synchronized pacing in a multi-chamber leadless pacemaker system.
机译:本文介绍了2.4 GHz在2.4 GHz的心室血容量变化对未来的多节点无引线胶囊起搏器的影响。在人体解剖模型中实施了数值电磁模拟,并在均匀液体模型中进行实验。结果表明,胶囊天线之间的耦合随着血积量的增加而降低,因为血液是高度衰减的介质。对于心脏内部的植入物链接,所接收的功率变化了3.1dB,并且在舒张和收缩期循环期间,心脏植入到亚皮肤植入物中的植入物植入的1.3dB。该发现对于开发无引线起搏器之间的体内通信,提供用于在多室无线起搏器系统中同步起搏的定时信息。

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