Nerve‐Inspired Optical Waveguide Stretchable Sensor Fusing Wireless Transmission and AI Enabling Smart Tele‐Healthcare

无线传感器网络 计算机科学 可穿戴计算机 软件可移植性 无线 传输(电信) 灵敏度(控制系统) 卷积神经网络 嵌入式系统 人工智能 电信 工程类 电子工程 计算机网络 程序设计语言
作者
Tianliang Li,Qian’ao Wang,Zhanghua Cao,Jianglin Zhu,Nian Wang,Run Li,Wei Meng,Quan Liu,Shifan Yu,Xinqin Liao,Aiguo Song,Yuegang Tan,Zude Zhou
出处
期刊:Advanced Science [Wiley]
被引量:4
标识
DOI:10.1002/advs.202410395
摘要

Abstract Flexible strain monitoring of hand and joint muscle movement is recognized as an effective method for the diagnosis and rehabilitation of neurological diseases such as stroke and Parkinson's disease. However, balancing high sensitivity and large strain, improving wearing comfort, and solving the separation of diagnosis and treatment are important challenges for further building tele‐healthcare systems. Herein, a hydrogel‐based optical waveguide stretchable (HOWS) sensor is proposed in this paper. A double network structure is adopted to allow the HOWS sensor to exhibit high stretchability of the tensile strain up to 600% and sensitivity of 0.685 mV % −1 . Additionally, the flexible smart bionic fabric embedding the HOWS sensor, produced through the warp and weft knitting, significantly enhances wearing comfort. A small circuit board is prepared to enable wireless signal transmission of the designed sensor, thereby improving the daily portability. A speech recognition and human‐machine interaction system, based on sensor signal acquisition, is constructed, and the convolutional neural network algorithm is integrated for disease assessment. By integrating sensing, wireless transmission, and artificial intelligence (AI), a smart tele‐healthcare system based on HOWS sensors is demonstrated to hold great potential for early warning and rehabilitation monitoring of neurological diseases.
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