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用于 EEG 记录的半干性电极综述。

Review of semi-dry electrodes for EEG recording.

机构信息

Hunan Key Laboratory of Biomedical Nanomaterials and Devices, College of Life Sciences and Chemistry, Hunan University of Technology, Zhuzhou 412007, People's Republic of China.

Zhuzhou Institute for Food and Drug Control, Zhuzhou 412000, People's Republic of China.

出版信息

J Neural Eng. 2020 Oct 23;17(5):051004. doi: 10.1088/1741-2552/abbd50.

Abstract

Developing reliable and user-friendly electroencephalography (EEG) electrodes remains a challenge for emerging real-world EEG applications. Classic wet electrodes are the gold standard for recording EEG; however, they are difficult to implement and make users uncomfortable, thus severely restricting their widespread application in real-life scenarios. An alternative is dry electrodes, which do not require conductive gels or skin preparation. Despite their quick setup and improved user-friendliness, dry electrodes still have some inherent problems (invasive, relatively poor signal quality, or sensitivity to motion artifacts), which limit their practical utilization. In recent years, semi-dry electrodes, which require only a small amount of electrolyte fluid, have been successfully developed, combining the advantages of both wet and dry electrodes while addressing their respective drawbacks. Semi-dry electrodes can collect reliable EEG signals comparable to wet electrodes. Moreover, their setup is as fast and convenient similar to that of dry electrodes. Hence, semi-dry electrodes have shown tremendous application prospects for real-world EEG acquisition. Herein, we systematically summarize the development, evaluation methods, and practical design considerations of semi-dry electrodes. Some feasible suggestions and new ideas for the development of semi-dry electrodes have been presented. This review provides valuable technical support for the development of semi-dry electrodes toward emerging practical applications.

摘要

开发可靠且用户友好的脑电图 (EEG) 电极仍然是新兴的现实世界 EEG 应用的挑战。经典的湿电极是记录 EEG 的金标准;然而,它们难以实施,并且会让使用者感到不适,因此严重限制了它们在现实生活场景中的广泛应用。另一种选择是干电极,它不需要导电凝胶或皮肤准备。尽管干电极具有快速设置和提高用户友好性的优点,但它们仍然存在一些固有的问题(侵入性、相对较差的信号质量或对运动伪影的敏感性),这限制了它们的实际应用。近年来,只需要少量电解质液体的半干电极已经成功开发出来,它们结合了湿电极和干电极的优点,同时解决了各自的缺点。半干电极可以收集与湿电极相当的可靠 EEG 信号。此外,它们的设置与干电极一样快速方便。因此,半干电极在现实世界的 EEG 采集方面具有巨大的应用前景。本文系统地总结了半干电极的发展、评估方法和实际设计考虑因素。对半干电极的发展提出了一些可行的建议和新的思路。本综述为半干电极向新兴实际应用的发展提供了有价值的技术支持。

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