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无电池全无线植入式异步起搏系统的设计与体内测试

Design and In Vivo Test of a Batteryless and Fully Wireless Implantable Asynchronous Pacing System.

作者信息

Asif Sajid M, Hansen Jared, Khan Muhammad S, Walden Scott D, Jensen Mark O, Braaten Benjamin D, Ewert Daniel L

出版信息

IEEE Trans Biomed Eng. 2016 May;63(5):1070-1081. doi: 10.1109/TBME.2015.2477403. Epub 2015 Sep 9.

Abstract

UNLABELLED

Goal: The aim of this study is to develop a novel fully wireless and batteryless technology for cardiac pacing.

METHODS

This technology uses radio frequency (RF) energy to power the implanted electrode in the heart. An implantable electrode antenna was designed for 1.2 GHz; then, it was tested in vitro and, subsequently, integrated with the rectifier and pacing circuit to make a complete electrode. The prototype implanted electrode was tested in vivo in an ovine subject, implanting it on the epicardial surface of the left ventricle. The RF energy, however, was transmitted to the implanted electrode using a horn antenna positioned 25 cm above the thorax of the sheep.

RESULTS

It was demonstrated that a small implanted electrode can capture and harvest enough safe recommended RF energy to achieve pacing. Electrocardiogram signals were recorded during the experiments, which demonstrated asynchronous pacing achieved at three different rates.

CONCLUSION

These results show that the proposed method has a great potential to be used for stimulating the heart and provides pacing, without requiring any leads or batteries. It hence has the advantage of potentially lasting indefinitely and may never require replacement during the life of the patient.

SIGNIFICANCE

The proposed method brings forward transformational possibilities in wireless cardiac pacing, and also in powering up the implantable devices.

摘要

未标注

目标:本研究的目的是开发一种用于心脏起搏的新型全无线且无电池技术。

方法

该技术利用射频(RF)能量为心脏内植入的电极供电。设计了一种用于1.2 GHz的植入式电极天线;然后,在体外对其进行测试,随后与整流器和起搏电路集成以制成完整的电极。将原型植入电极在绵羊体内进行测试,将其植入左心室的心外膜表面。然而,使用位于绵羊胸部上方25 cm处的喇叭天线将RF能量传输到植入电极。

结果

结果表明,一个小型植入电极能够捕获并收集足够的安全推荐RF能量以实现起搏。实验期间记录了心电图信号,表明以三种不同速率实现了异步起搏。

结论

这些结果表明,所提出的方法在用于刺激心脏并提供起搏方面具有巨大潜力,无需任何导线或电池。因此,它具有可能无限期持续且在患者生命期间可能永远无需更换的优点。

意义

所提出的方法在无线心脏起搏以及为可植入设备供电方面带来了变革性的可能性。

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