Centre for Programmed Materials, School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, 639798, Singapore.
i-Lab, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences, Suzhou, 215123, P. R. China.
Small. 2017 Jul;13(25). doi: 10.1002/smll.201602790. Epub 2017 Mar 17.
Wearable or attachable health monitoring smart systems are considered to be the next generation of personal portable devices for remote medicine practices. Smart flexible sensing electronics are components crucial in endowing health monitoring systems with the capability of real-time tracking of physiological signals. These signals are closely associated with body conditions, such as heart rate, wrist pulse, body temperature, blood/intraocular pressure and blood/sweat bio-information. Monitoring such physiological signals provides a convenient and non-invasive way for disease diagnoses and health assessments. This Review summarizes the recent progress of flexible sensing electronics for their use in wearable/attachable health monitoring systems. Meanwhile, we present an overview of different materials and configurations for flexible sensors, including piezo-resistive, piezo-electrical, capacitive, and field effect transistor based devices, and analyze the working principles in monitoring physiological signals. In addition, the future perspectives of wearable healthcare systems and the technical demands on their commercialization are briefly discussed.
可穿戴或可附着式健康监测智能系统被认为是远程医疗实践的下一代个人便携式设备。智能柔性传感电子是赋予健康监测系统实时跟踪生理信号能力的关键组件。这些信号与心率、腕部脉搏、体温、血压/眼压和血液/汗液生物信息等身体状况密切相关。监测这些生理信号为疾病诊断和健康评估提供了一种方便和非侵入性的方式。本综述总结了用于可穿戴/附着式健康监测系统的柔性传感电子的最新进展。同时,我们概述了不同材料和配置的柔性传感器,包括压阻式、压电式、电容式和基于场效应晶体管的器件,并分析了监测生理信号的工作原理。此外,还简要讨论了可穿戴医疗保健系统的未来展望以及其商业化的技术需求。