可穿戴计算机
可穿戴技术
数码产品
拉伤
信号(编程语言)
纳米技术
材料科学
机制(生物学)
计算机科学
电容感应
电气工程
工程类
嵌入式系统
认识论
操作系统
内科学
哲学
医学
程序设计语言
作者
Zhiran Shen,Fanmao Liu,Shuang Huang,Hao Wang,Cheng Yang,Tian Hang,Jun Tao,Wenhao Xia,Xi Xie
标识
DOI:10.1016/j.bios.2022.114298
摘要
Flexible strain sensors, as a key component of the cutting-edge wearable and implantable electronics, have facilitated applications pertaining to human health monitoring and diagnosis. To fulfill the increasing requirements of sensing performance and broadening the application scope, novel materials and device design strategies have been continuously developed over the past decade. Herein, the recent progresses of flexible strain sensors developed for monitoring the physiological signals are selectively reviewed, from the perspective of the possible correlation between the device microstructure and their corresponding applications. Firstly, representative strain sensors developed based on four fundamental working mechanisms: piezoresistance, capacitance, piezoelectricity and triboelectricity are respectively introduced, subclassified by the type of active material or the similarity in microstructure. Next, a number of biomedical applications of flexible strain sensors are highlighted, including the detections of different types of physiological signals using specific microstructured strain sensors. Lastly, the role of the transduction mechanism and the device microstructure in the sensing characteristic are comprehensively discussed, and prospective forms of flexible strain sensors to meet the existing and future challenges in wearable/implantable electronics are summarized.
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