Pei Weihua, Zhang He, Wang Yijun, Guo Xuhong, Xing Xiao, Huang Yong, Xie Yuxing, Yang Xiaowei, Chen Hongda
IEEE Trans Biomed Eng. 2017 Feb;64(2):463-470. doi: 10.1109/TBME.2016.2562702. Epub 2016 May 4.
A skin-potential variation (SPV) insensitive dry electrode is developed to remove the interference of SPV.
Based on a conventional microneedles array-based electrode, a layer of Parylene membrane is coated at the root of microneedles to insulate the electrode from the corneum layer. Only tips of the needles are exposed to make it can contact with the stratum germinativum layer directly.
As a result, skin potential will not be coupled into the recording electrode. Thus, SPV will not influence the biopotential recording in the dynamic state.
The proposed electrode is potential for a device which is insensitive to the motion noise source from SPV.
It paves the way for applications of the proposed dry electrode in the wearable technology which require strong anti-motion interference ability.
开发一种对皮肤电位变化(SPV)不敏感的干电极,以消除SPV的干扰。
基于传统的基于微针阵列的电极,在微针根部涂覆一层聚对二甲苯膜,使电极与角质层绝缘。仅针尖暴露在外,使其能够直接与生发层接触。
因此,皮肤电位不会耦合到记录电极中。这样,SPV在动态状态下不会影响生物电位记录。
所提出的电极对于对来自SPV的运动噪声源不敏感的设备具有潜力。
为所提出的干电极在需要强大抗运动干扰能力的可穿戴技术中的应用铺平了道路。