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一种用于长期心电图记录的基于聚二甲基硅氧烷的微针阵列电极。

A PDMS-based microneedle array electrode for long-term ECG recording.

作者信息

Wang Renxin, Bai Jianxin, Zhu Xiaohang, Li Zhaodong, Cheng Lixia, Zhang Guojun, Zhang Wendong

机构信息

State Key Laboratory of Dynamic Testing Technology, North University of China, Taiyuan, 030051, China.

Science and Technology On Sonar Laboratory, Hangzhou, 310000, China.

出版信息

Biomed Microdevices. 2022 Aug 12;24(3):27. doi: 10.1007/s10544-022-00626-y.

Abstract

To acquire high-quality electrocardiogram (ECG) signals, traditional Ag/AgCl wet electrodes used together with conductive gel can effectively reduce electrode-skin interface impedance (EII) in a short term. However, their weaknesses of poor flexibility and instability can no longer meet the long-term monitoring requirements of intelligent wearable devices. Owing to the flexible dry electrode without conductive gel, it is a good choice to solve the critical problem on drying-out of conductive gel. Therefore, we develop a flexible microneedle array electrode (FMAE) based on polydimethylsiloxane (PDMS) substrate, which obtains reliable bioelectrical signals by way of penetrating into the stratum corneum (SC) of the skin. The fabrication process, including silicon mold, twice PDMS shape-transferring and encapsulation, has advantages of low cost, repeatable production and good biocompatibility. Afterwards, by comparing the performance with different electrodes, impedance test results indicate that the impedance of FMAE are smaller and more stable, and ECG tests in long term and at resting/jogging states also verify that FMAE can obtain durable, stable and reliable signals. In conclusion, FMAE is promising in long-term ECG monitoring.

摘要

为了获取高质量的心电图(ECG)信号,传统的Ag/AgCl湿电极与导电凝胶一起使用可以在短期内有效降低电极-皮肤界面阻抗(EII)。然而,它们柔韧性差和稳定性不足的缺点已无法满足智能可穿戴设备的长期监测要求。由于无需导电凝胶的柔性干电极是解决导电凝胶干涸这一关键问题的良好选择。因此,我们基于聚二甲基硅氧烷(PDMS)基底开发了一种柔性微针阵列电极(FMAE),它通过穿透皮肤角质层(SC)来获取可靠的生物电信号。其制造工艺包括硅模具、两次PDMS形状转移和封装,具有成本低、可重复生产和良好生物相容性的优点。之后,通过与不同电极的性能比较,阻抗测试结果表明FMAE的阻抗更小且更稳定,长期以及静息/慢跑状态下的心电图测试也验证了FMAE能够获得持久、稳定且可靠的信号。总之,FMAE在长期心电图监测方面具有广阔前景。

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