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用于移动脑机接口的干电极和非接触式 EEG 传感器。

Dry and noncontact EEG sensors for mobile brain-computer interfaces.

机构信息

Department of Electrical and Computer Engineering, Jacobs School of Engineering, University of California-San Diego, La Jolla, CA 92093, USA.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2012 Mar;20(2):228-35. doi: 10.1109/TNSRE.2011.2174652. Epub 2011 Dec 12.

Abstract

Dry and noncontact electroencephalographic (EEG) electrodes, which do not require gel or even direct scalp coupling, have been considered as an enabler of practical, real-world, brain-computer interface (BCI) platforms. This study compares wet electrodes to dry and through hair, noncontact electrodes within a steady state visual evoked potential (SSVEP) BCI paradigm. The construction of a dry contact electrode, featuring fingered contact posts and active buffering circuitry is presented. Additionally, the development of a new, noncontact, capacitive electrode that utilizes a custom integrated, high-impedance analog front-end is introduced. Offline tests on 10 subjects characterize the signal quality from the different electrodes and demonstrate that acquisition of small amplitude, SSVEP signals is possible, even through hair using the new integrated noncontact sensor. Online BCI experiments demonstrate that the information transfer rate (ITR) with the dry electrodes is comparable to that of wet electrodes, completely without the need for gel or other conductive media. In addition, data from the noncontact electrode, operating on the top of hair, show a maximum ITR in excess of 19 bits/min at 100% accuracy (versus 29.2 bits/min for wet electrodes and 34.4 bits/min for dry electrodes), a level that has never been demonstrated before. The results of these experiments show that both dry and noncontact electrodes, with further development, may become a viable tool for both future mobile BCI and general EEG applications.

摘要

干电极和非接触式脑电图 (EEG) 电极不需要凝胶甚至不需要直接与头皮接触,它们被认为是实用的、真实世界的脑机接口 (BCI) 平台的推动者。本研究在稳态视觉诱发电位 (SSVEP) BCI 范式中比较了湿电极与干电极和通过头发的非接触电极。介绍了一种具有指状接触柱和有源缓冲电路的干接触电极的结构。此外,还开发了一种新的非接触式电容电极,该电极利用定制的高阻抗模拟前端。对 10 名受试者的离线测试对不同电极的信号质量进行了特征描述,并证明即使使用新的集成非接触式传感器通过头发也可以获取小幅度的 SSVEP 信号。在线 BCI 实验表明,干电极的信息传输率 (ITR) 可与湿电极相媲美,完全不需要凝胶或其他导电介质。此外,位于头发顶部的非接触式电极的数据显示,在 100%准确率下,其最大 ITR 超过 19 位/分钟(相比之下,湿电极为 29.2 位/分钟,干电极为 34.4 位/分钟),这是以前从未达到过的水平。这些实验的结果表明,干电极和非接触电极都具有进一步发展的潜力,可能成为未来移动 BCI 和一般 EEG 应用的可行工具。

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