共形矩阵
丝绸
材料科学
纳米技术
电生理学
接口(物质)
仿生学
高分子科学
复合材料
生物医学工程
神经科学
生物
工程类
毛细管数
毛细管作用
作者
Zhong‐Hua Yang,Zishuo Zhang,Tao Zhou,Nuo Yu,Robert K. Yu,Xiangheng Du,Xiaowen Bai,Zhenyu Miao,Wang Wenhui,Shaohui Pan,Meifang Zhu
标识
DOI:10.1002/adfm.202402608
摘要
Abstract The electrophysiological interface is essential for understanding electrical activities within biological organisms and human‐machine interaction. However, traditional preformed bioelectrodes show insufficient interface contact with hairy and irregular skin, causing signal attenuation and distortion. Here, an on‐skin‐formed silk protein bioelectrode is reported with a conformable and robust interface, achieving a high signal‐to‐noise ratio for electromyographic signals, showing up to a 38.9% increase compared to traditional ones. The fluid‐gel transition of silk protein is induced by a gelling agent composed of ethanol and sodium alginate, leading to a conformable and seamless interface with hairy and irregular human skin, thus resulting in a high signal‐to‐noise ratio. The developed bioelectrode can record electrophysiological signals stably, even underwater. Additionally, human‐machine interaction using electromyographic signals is designed to precisely control the model car's motion trajectory. This work presents an effective method for developing a seamless and conformable electrophysiological interface in bioelectronics.
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