Dong Wentao, Cheng Xiao, Xiong Tao, Wang Xiaoming
School of Electrical and Automation Engineering, East China Jiaotong University, Nanchang, 330013, China.
Rail Transportation Technology Innovation Center, East China Jiaotong University, Nanchang, 330013, China.
Biomed Microdevices. 2019 Jan 3;21(1):6. doi: 10.1007/s10544-018-0353-x.
Current stretchable surface electrodes have attracted more and more attentions owing to their potential applications in the fields of biological signal monitoring, wearable human-machine interface (HMI) and Internet of Things (IoT). The paper presents that stretchable bio-potential electrode is designed with the second order self-similar serpentine structure to continuous, long-term, stable ECG signal recordings which is conformal contact with the soft skin surface. FEM and experiments have validated >30% deformability of the surface electrode with second order self-similar structure. The continuous 48 h electrocardiograms (ECG) signal recording experiments have been demonstrated by the stretchable electrodes. Meanwhile, robustness and stability of ECG signal are validated by the stretchable bio-potential electrodes when the external strain is applied to the body surface. The stretchable bio-potential electrode could be integrated to biological signal monitoring and human machine interface capabilities for the future research.
当前,可拉伸表面电极因其在生物信号监测、可穿戴人机接口(HMI)和物联网(IoT)领域的潜在应用而受到越来越多的关注。本文提出,可拉伸生物电势电极采用二阶自相似蛇形结构设计,以实现与柔软皮肤表面共形接触的连续、长期、稳定的心电图信号记录。有限元法(FEM)和实验已经验证了具有二阶自相似结构的表面电极的变形能力大于30%。可拉伸电极已经完成了连续48小时心电图(ECG)信号记录实验。同时,当体表受到外部应变时,可拉伸生物电势电极验证了心电图信号的鲁棒性和稳定性。可拉伸生物电势电极可集成生物信号监测和人机接口功能,用于未来研究。