Department of Electrical, Computer and Biomedical Engineering, University of Rhode Island, Kingston, RI 02881, USA.
Sensors (Basel). 2024 Jun 29;24(13):4222. doi: 10.3390/s24134222.
Electroencephalography (EEG) remains pivotal in neuroscience for its non-invasive exploration of brain activity, yet traditional electrodes are plagued with artifacts and the application of conductive paste poses practical challenges. Tripolar concentric ring electrode (TCRE) sensors used for EEG (tEEG) attenuate artifacts automatically, improving the signal quality. Hydrogel tapes offer a promising alternative to conductive paste, providing mess-free application and reliable electrode-skin contact in locations without hair. Since the electrodes of the TCRE sensors are only 1.0 mm apart, the impedance of the skin-to-electrode impedance-matching medium is critical. This study evaluates four hydrogel tapes' efficacies in EEG electrode application, comparing impedance and alpha wave characteristics. Healthy adult participants underwent tEEG recordings using different tapes. The results highlight varying impedances and successful alpha wave detection despite increased tape-induced impedance. MATLAB's EEGLab facilitated signal processing. This study underscores hydrogel tapes' potential as a convenient and effective alternative to traditional paste, enriching tEEG research methodologies. Two of the conductive hydrogel tapes had significantly higher alpha wave power than the other tapes, but were never significantly lower.
脑电图(EEG)在神经科学中仍然具有重要地位,因为它可以非侵入性地探测大脑活动,但传统的电极受到伪影的困扰,而导电膏的应用也带来了实际的挑战。用于脑电图(tEEG)的三极同心环电极(TCRE)传感器可以自动衰减伪影,从而提高信号质量。水凝胶带为导电膏提供了一种有前途的替代方案,在没有毛发的部位,可以提供无混乱的应用和可靠的电极-皮肤接触。由于 TCRE 传感器的电极之间仅相隔 1.0 毫米,因此皮肤到电极阻抗匹配介质的阻抗就显得至关重要。本研究评估了四种水凝胶带在 EEG 电极应用中的效果,比较了它们的阻抗和 alpha 波特征。健康的成年参与者使用不同的带子进行了 tEEG 记录。结果表明,尽管带引起的阻抗增加,但阻抗和成功的 alpha 波检测存在差异。MATLAB 的 EEGLab 促进了信号处理。本研究强调了水凝胶带作为传统膏剂的便捷有效替代品的潜力,丰富了 tEEG 研究方法。两种导电水凝胶带的 alpha 波功率明显高于其他带,但从未明显低于其他带。