Lan Tianxiang, Tian Hongmiao, Chen Xiaoliang, Li Xiangming, Wang Chunhui, Wang Duorui, Li Sheng, Liu Gangqiang, Zhu Xinkai, Shao Jinyou
State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi, 710049, China.
Frontier Institute of Science and Technology (FIST), Xi'an Jiaotong University, 99 YanXiang Road, West 5th building, Xi'an, Shaanxi, 710054, China.
Adv Mater. 2024 Aug;36(31):e2404761. doi: 10.1002/adma.202404761. Epub 2024 May 31.
Long-term continuous monitoring (LTCM) of physiological electrical signals is an effective means for detecting several cardiovascular diseases. However, the integrated challenges of stable adhesion, low impedance, and robust durability under different skin conditions significantly hinder the application of flexible electrodes in LTCM. This paper proposes a structured electrode inspired by the treefrog web, comprising dispersed pillars at the bottom and asymmetric cone holes at the top. Attachment structures with a dispersed pillar improve the contact stability (adhesion increases 2.79/13.16 times in dry/wet conditions compared to an electrode without structure). Improved permeable duct structure provides high permeability (12 times compared to cotton). Due to high adhesion and permeability, the electrode's durability is 40 times larger than commercial Ag/AgCl electrodes. The treefrog web-like electrode has great advantages in permeability, adhesion, and durability, resulting in prospects for application in physiological electrical signal detection and a new design idea for LTCM wearable dry electrodes.
生理电信号的长期连续监测(LTCM)是检测多种心血管疾病的有效手段。然而,在不同皮肤条件下实现稳定粘附、低阻抗和强大耐用性等综合挑战,严重阻碍了柔性电极在LTCM中的应用。本文提出了一种受树蛙蹼启发的结构化电极,底部有分散的柱状物,顶部有不对称的锥形孔。具有分散柱状物的附着结构提高了接触稳定性(在干燥/潮湿条件下,与无结构电极相比,粘附力增加2.79/13.16倍)。改进的渗透管道结构提供了高渗透性(与棉花相比高12倍)。由于高粘附性和渗透性,该电极的耐用性比商用Ag/AgCl电极大40倍。这种树蛙蹼状电极在渗透性、粘附性和耐用性方面具有很大优势,在生理电信号检测中具有应用前景,并为LTCM可穿戴式干电极提供了一种新的设计思路。