材料科学
信号(编程语言)
数据采集
接口(物质)
可穿戴计算机
感觉系统
计算机硬件
数码产品
电极阵列
生物医学工程
嵌入式系统
神经科学
电气工程
计算机科学
生物
工程类
最大气泡压力法
操作系统
气泡
电压
并行计算
程序设计语言
作者
Quan Zhang,Menglong Qu,Xingye Liu,Yilei Cui,Haining Hu,Qianyun Li,Meifu Jin,Jieyu Xian,Zhengwei Nie,Cheng Zhang
标识
DOI:10.1002/admi.202201735
摘要
Abstract On‐skin sensors can precisely perceive important electrophysiological signals, including electroencephalogram (EEG), electrocardiogram (ECG), and electromyogram (EMG). Despite significant advances in the development of soft materials as electrode sensors, data acquisition (DAQ) unit—another indispensable component of on‐skin electronic sensory systems—typically exhibits bulkiness or unimodal sensing, which is detrimental to the portability of the sensory system or the comprehensiveness of the perceived information. Here, a portable and multimodal DAQ unit to tackle these challenges is designed. By assembling the DAQ unit with low‐impedance (<100 Ω) laser‐induced graphene on‐skin electrode sensors, a wireless communication module, a power supply module, and a 3D printed protective shell, the completed sensory system can realize three‐in‐one monitoring of EEG, ECG, and EMG with a light weight of 22 g and a low cost of $25. Moreover, a mobile App is developed to display the perceived electrophysiological signals in real time. Human–machine interface and embedded machine learning are demonstrated using the designed sensory system, indicating its potential applications in artificial intelligence. The success of this inexpensive three‐in‐one portable electronic sensory system sheds light on design, fabrication, and commercialization of multifunctional wearable electronics with wide applications in fitness tracking, medical diagnostics, and human–machine interface.
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