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用于生物信号监测的带有柔性基底的微针阵列电极的制作与特性研究。

Fabrication and characterization of a microneedle array electrode with flexible backing for biosignal monitoring.

机构信息

Department of Electrical and Computer Engineering, University of British Columbia, Vancouver, B.C, Canada.

Department of Mechanical Engineering, University of British Columbia, Vancouver, B.C, Canada.

出版信息

Biomed Microdevices. 2021 Oct 6;23(4):53. doi: 10.1007/s10544-021-00583-y.

Abstract

The conventional wet electrode for recording biosignals poses many inconveniences, as it requires an electrolytic gel that dries over time changing its electrical characteristics. The skin typically needs to be abraded when the electrode is applied to record high-quality signals, requiring assistance of trained personnel for the placement of the wet electrode. Alternative electrode designs to overcome these challenges often have difficulties recording small amplitude signals or their fabrication methods are complex and expensive. This research proposes a novel design and a simple fabrication method for a dry microneedle electrode for biosignal monitoring. The electrode can record electroencephalogram and electrocardiogram signals from a human subject without electrolytic gel and it does not require skin preparation such as abrasion, making it suitable for long term measurements as opposed to the wet electrode. When applied to the skin of a human subject with an impact inserter, the electrode has a lower impedance at the skin-electrode interface yielding better signal recording compared to application by hand. The selected electrode materials provides microneedles stiff enough to cross the outmost layer of the skin, while the flexible backing of the electrode has been designed to improve the conformation of the electrode to the rounded shape of the body. The proposed fabrication method for the electrode is based on a simple mold casting process that enables batch production while also reducing the time spent in a cleanroom and the use of expensive machinery.

摘要

传统的湿电极在记录生物信号时存在许多不便,因为它需要一种随着时间的推移而变干的电解凝胶,从而改变其电特性。当电极用于记录高质量信号时,通常需要对皮肤进行磨砂处理,这需要经过培训的人员来协助放置湿电极。为了克服这些挑战,替代电极设计通常在记录小幅度信号方面存在困难,或者其制造方法复杂且昂贵。本研究提出了一种用于生物信号监测的新型干微针电极的设计和简单制造方法。该电极无需电解凝胶即可记录人体的脑电图和心电图信号,并且不需要进行皮肤准备,如磨砂处理,因此适合长期测量,与湿电极相比具有优势。当使用冲击插入器将电极应用于人体皮肤时,与手动应用相比,电极在皮肤-电极界面处具有更低的阻抗,从而可以更好地记录信号。所选的电极材料提供了足够硬的微针,可以穿透皮肤的最外层,而电极的柔性背衬则被设计为改善电极与身体圆形形状的贴合度。该电极的制造方法基于简单的模具铸造工艺,能够实现批量生产,同时减少在洁净室中花费的时间和使用昂贵的机器。

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