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Skin-integrated, biocompatible, and stretchable silicon microneedle electrode for long-term EMG monitoring in motion scenario

Engineering and Technology

Skin-integrated, biocompatible, and stretchable silicon microneedle electrode for long-term EMG monitoring in motion scenario

H. Ji, M. Wang, et al.

Discover the groundbreaking research on a skin-integrated, biocompatible, and stretchable silicon microneedle electrode (SSME) designed for accurate and long-term electromyography (EMG) monitoring. This innovative solution, inspired by nature, showcases impressive stretchability and biocompatibility, holding promising applications in human-computer interfaces and healthcare. Conducted by a team of experts including Huawei Ji, Mingyu Wang, Yutong Wang, and others.

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~3 min • Beginner • English
Abstract
Electromyography (EMG) signal is the electrical potential generated by contracting muscle cells. Long-term and accurate EMG monitoring is desirable for neuromuscular function assessment in clinical and the human-computer interfaces. Herein, we report a skin-integrated, biocompatible, and stretchable silicon microneedle electrode (SSME) inspired by the plant thorns. The silicon microneedles are half encapsulated by the polyimide (PI) to enhance the adaptability to deformation and resistance to fatigue. Thorn-like SSME is realized by the semi-additive method with a stretchability of not less than 36%. The biocompatibility of SSME has been verified using cytotoxicity tests. EMG monitoring in motion and long-term has been conducted to demonstrate the feasibility and performance of the SSME, which is compared with a commercial wet electrode. Hopefully, the strategies reported here can lead to accurate and long-term EMG monitoring, facilitating an effective and reliable human-computer interface.
Publisher
npj Flexible Electronics
Published On
Oct 17, 2023
Authors
Huawei Ji, Mingyu Wang, Yutong Wang, Zhouheng Wang, Yinji Ma, Lanlan Liu, Honglei Zhou, Ze Xu, Xian Wang, Ying Chen, Xue Feng
Tags
electromyography
biocompatible
stretchable electrode
silicon microneedle
long-term monitoring
human-computer interfaces
healthcare
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