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通过使用微针电极阵列提高电生理信号记录质量。

Towards Improving the Quality of Electrophysiological Signal Recordings by Using Microneedle Electrode Arrays.

出版信息

IEEE Trans Biomed Eng. 2021 Nov;68(11):3327-3335. doi: 10.1109/TBME.2021.3070541. Epub 2021 Oct 19.

DOI:10.1109/TBME.2021.3070541
PMID:33798063
Abstract

OBJECTIVE

Electrophysiological signals are recorded generally by metal electrodes placed on body surface. For long term use, the signal quality may decay with the change of interface impedance between electrodes and skin due to the conductive hydrogel dehydration. Besides, electrodes may shift during body movements, which causes unstable signal recordings.

METHODS

To improve the quality of electrophysiological signal recordings on human body surface, a type of microneedle electrode array (MEA) with microneedles around 550 μm in length was fabricated with a magnetization-induce self-assembly method.

RESULTS

Compared with the commonly used dry electrode array, the MEA has lower and more stable interface impedance, especially when the electrode-skin interface is under unstable pressures. For electrophysiological signal recording, the MEA can acquire electromyography (EMG) with significantly lower noise energy, higher signal-to-noise ratio, and higher motion-classification accuracy based on the EMG pattern-recognition method. Additionally, high quality electrocardiography (ECG) can be recorded by using the MEA, where more accurate R-peaks are extracted in different scenarios. Besides, there was no report about any discomfort like bleeding or inflammation by all the subjects.

CONCLUSION

This research proved that the microneedles on the MEA can penetrate through the corneum and reach the epidermis of the subjects, which could avoid the influence of corneum and fix the electrode on the body surface for high-quality signal recording especially during body movements. Furthermore, the microneedles would not touch the dermis, enabling a painless signal acquisition.

SIGNIFICANCE

This work is beneficial to the applications of wearable human-machine interface technology.

摘要

目的

电生理信号通常通过放置在体表的金属电极进行记录。由于导电水凝胶脱水,电极与皮肤之间的界面阻抗随时间的推移而发生变化,因此长期使用时信号质量可能会下降。此外,电极在身体运动过程中可能会发生移位,从而导致信号记录不稳定。

方法

为了提高人体表面电生理信号记录的质量,采用磁化诱导自组装方法制备了一种长度约为 550μm 的微针电极阵列(MEA)。

结果

与常用的干电极阵列相比,MEA 的界面阻抗更低且更稳定,尤其是在电极-皮肤界面压力不稳定的情况下。对于电生理信号记录,MEA 可以根据肌电图(EMG)模式识别方法获取具有更低噪声能量、更高信噪比和更高运动分类准确性的 EMG。此外,通过使用 MEA 可以记录高质量的心电图(ECG),在不同情况下可以提取出更准确的 R 波峰值。此外,所有受试者均未报告任何不适,如出血或炎症。

结论

这项研究证明了 MEA 上的微针可以穿透角质层并到达受试者的表皮,从而避免了角质层的影响,并将电极固定在身体表面以进行高质量的信号记录,尤其是在身体运动期间。此外,微针不会触及真皮,从而实现无痛信号采集。

意义

这项工作有利于可穿戴人机接口技术的应用。

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