摩擦电效应
纳米发生器
能量收集
心脏起搏器
机械能
生物电子学
电气工程
医学
电压
心脏病学
材料科学
功率(物理)
纳米技术
工程类
物理
复合材料
生物传感器
量子力学
作者
Han Ouyang,Zhuo Liu,Ning Li,Bojing Shi,Yang Zou,Feng Xie,Ye Ma,Zhe Li,Hu Li,Qiang Zheng,Xuecheng Qu,Yubo Fan,Zhong Lin Wang,Hao Zhang
标识
DOI:10.1038/s41467-019-09851-1
摘要
Self-powered implantable medical electronic devices that harvest biomechanical energy from cardiac motion, respiratory movement and blood flow are part of a paradigm shift that is on the horizon. Here, we demonstrate a fully implanted symbiotic pacemaker based on an implantable triboelectric nanogenerator, which achieves energy harvesting and storage as well as cardiac pacing on a large-animal scale. The symbiotic pacemaker successfully corrects sinus arrhythmia and prevents deterioration. The open circuit voltage of an implantable triboelectric nanogenerator reaches up to 65.2 V. The energy harvested from each cardiac motion cycle is 0.495 μJ, which is higher than the required endocardial pacing threshold energy (0.377 μJ). Implantable triboelectric nanogenerators for implantable medical devices offer advantages of excellent output performance, high power density, and good durability, and are expected to find application in fields of treatment and diagnosis as in vivo symbiotic bioelectronics.
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