Self-Powered, One-Stop, and Multifunctional Implantable Triboelectric Active Sensor for Real-Time Biomedical Monitoring

摩擦电效应 纳米技术 材料科学 复合材料
作者
Ye Ma,Qiang Zheng,Yang Liu,Bojin Shi,Xiang Xue,Weiping Ji,Zhuo Liu,Yiming Jin,Yang Zou,An Zhao,Wei Zhang,Xinxin Wang,Wen Jiang,Zhiyun Xu,Zhong Lin Wang,Zhou Li,Hao Zhang
出处
期刊:Nano Letters [American Chemical Society]
卷期号:16 (10): 6042-6051 被引量:353
标识
DOI:10.1021/acs.nanolett.6b01968
摘要

Operation time of implantable electronic devices is largely constrained by the lifetime of batteries, which have to be replaced periodically by surgical procedures once exhausted, causing physical and mental suffering to patients and increasing healthcare costs. Besides the efficient scavenging of the mechanical energy of internal organs, this study proposes a self-powered, flexible, and one-stop implantable triboelectric active sensor (iTEAS) that can provide continuous monitoring of multiple physiological and pathological signs. As demonstrated in human-scale animals, the device can monitor heart rates, reaching an accuracy of ∼99%. Cardiac arrhythmias such as atrial fibrillation and ventricular premature contraction can be detected in real-time. Furthermore, a novel method of monitoring respiratory rates and phases is established by analyzing variations of the output peaks of the iTEAS. Blood pressure can be independently estimated and the velocity of blood flow calculated with the aid of a separate arterial pressure catheter. With the core-shell packaging strategy, monitoring functionality remains excellent during 72 h after closure of the chest. The in vivo biocompatibility of the device is examined after 2 weeks of implantation, proving suitability for practical use. As a multifunctional biomedical monitor that is exempt from needing an external power supply, the proposed iTEAS holds great potential in the future of the healthcare industry.
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