Multimodal sponge-based wearable sensor for continuous monitoring of electrochemical and electrophysiological signals during exercise

可穿戴计算机 可穿戴技术 计算机科学 人机交互 持续监测 远程病人监护 汗腺 材料科学 生物医学工程 信号(编程语言) 光容积图 实时计算 工作(物理) 纳米技术 辅助生活 无线传感器网络 嵌入式系统 频道(广播) 计算机硬件
作者
Yue Li,Xuejie Wang,Yu‐Chun Lin,Veronica Asmita,Hnin Yin Yin Nyein
出处
期刊:Journal of Materials Chemistry B [Royal Society of Chemistry]
卷期号:13 (41): 13245-13255 被引量:1
标识
DOI:10.1039/d5tb01538c
摘要

The increasing demand for non-invasive wearable technologies in sports science to track athletic performance has heightened interest in multimodal systems that continuously monitor both physical and biochemical signals. These integrated platforms overcome the limitations of traditional invasive and fragmented monitoring methods, providing comprehensive physiological datasets for a holistic performance assessment. This work introduces a fully flexible epidermal patch utilizing three-dimensional multi-wall carbon nanotube-polydimethylsiloxane sponge electrodes embedded inside skin-conformal microfluidics. The sponge design facilitates electrochemical sensing of sweat glucose and lactate-critical biomarkers for endurance evaluation, while also integrating biophysical sensors for on-demand electrocardiogram and electromyogram acquisition. The three-dimensional porous architecture enhances the electroactive surface area and maintains strain-invariant electrical properties during deformation, ensuring sensitive and accurate signal output. Furthermore, the polydimethylsiloxane-based sponge framework allows for seamless room-temperature integration with silicone substrates without a bonding procedure. Validation during physical exercise demonstrated the synchronous monitoring of muscular activity, cardiac rhythm, and sweat glucose/lactate concentrations. This multimodal platform holds significant potential for establishing correlations between sweat biomarkers and physiological states, ultimately enabling the optimization of athletic performance in real-world settings.
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