A Stretchable and Biocompatible Electrode Array–Chip System for Real-Time Hand Gesture Classification
Human-machine interfaces demand soft bioelectronic systems capable of acquiring high-fidelity electrophysiological signals while maintaining mechanical compliance comparable to human skin. Here, we report a stretchable and conductive electrode array based on a PEDOT:PSS composite modified with Poloxamer and polar solvents. The synergistic doping strategy enhanced mechanical compliance, reduced impedance, and improved conformability, enabling stable acquisition of diverse electrophysiological biosignals. To realize a practical bioelectronic system, the electrode array was integrated with a custom-designed, low-power biointerface circuit capable of multichannel amplification, filtering, and digitization. The integrated platform enabled real-time classification of hand gestures from 20-channel electromyography recordings with high accuracy. Furthermore, we demonstrate its application as a human–machine interface by enabling calculator control as an augmentative and alternative communication tool. This work lays the technological foundation for next-generation stretchable bioelectronic interfaces, bridging human intent and machine intelligence through seamless, reliable interaction.
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- Authors (Pusan National University)
· First author: Taekwon Kim (School of Electrical & Electronics Engineering)
· Corresponding author: Hyunseok Shim (School of Electrical & Electronics Engineering
- Title of original paper: A Stretchable and Biocompatible Electrode Array–Chip System for Real-Time Hand Gesture Classification
- Journal: Small
- Web link: https://onlinelibrary.wiley.com/doi/10.1002/smll.75510

260921-352-(첨부) 부산대 연구진-왼쪽부터 심현석, 박성윤, 김태권.jpg
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