传感器
心脏起搏器
材料科学
电池(电)
心脏起搏
压电
电气工程
生物医学工程
功率(物理)
心脏病学
医学
工程类
量子力学
物理
复合材料
作者
Zhiran Yi,Feng Xie,Yingwei Tian,Ning Li,Xiaoxue Dong,Ye Ma,Yue Huang,Yili Hu,Xiaobin Xu,Dan Qu,Xilong Lang,Zhiyun Xu,Jingquan Liu,Hao Zhang,Bin Yang
标识
DOI:10.1002/adfm.202000477
摘要
Abstract Over the past half‐century, cardiac pacing technology has adhered to one basic system. However, many pacemaker‐related complications are related to this system, particularly in terms of the power supply and leads. Here, for the first time a heart‐worn pacemaker strategy is presented, which allows batteryless powering and leadless pacing. The batteryless feature is attained via heart‐extrusion energy scavenging through a micromachined piezoelectric thick film transducer. A record in vivo output current of 30 µA is obtained in an adult swine by the implanted piezoelectric transducer, which can effectively drive a commercial cardiac pacemaker. The exocardial pacing method is demonstrated by this batteryless pacemaker functions without a device or leads placed within the cardiac chambers. Lead‐ or batteryless options are being explored as new basic features of cardiac pacemakers. The presented heart‐worn pacemaker strategy may be useful in future pacing technology.
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