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Systematic comparison between a wireless EEG system with dry electrodes and a wired EEG system with wet electrodes

机译:具有干电极的无线EEG系统和具有湿电极的有线EEG系统之间的系统比较

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Recent advances in dry electrodes technology have facilitated the recording of EEG in situations not previously possible, thanks to the relatively swift electrode preparation and avoidance of applying gel to subject's hair. However, to become a true alternative, these systems should be compared to state-of-the-art wet EEG systems commonly used in clinical or research applications. In our study, we conducted a systematic comparison of electrodes application speed, subject comfort, and most critically electrophysiological signal quality between the conventional and wired Biosemi EEG system using wet active electrodes and the compact and wireless F1 EEG system consisting of dry passive electrodes. All subjects (n = 27) participated in two recording sessions on separate days, one with the wet EEG system and one with the dry EEG system, in which the session order was counterbalanced across subjects. In each session, we recorded their EEG during separate rest periods with eyes open and closed followed by two versions of a serial visual presentation target detection task. Each task component allows for a neural measure reflecting different characteristics of the data, including spectral power in canonical low frequency bands, event-related potential components (specifically, the P3b), and single trial classification based on machine learning. The performance across the two systems was similar in most measures, including the P3b amplitude and topography, as well as low frequency (theta, alpha, and beta) spectral power at rest. Both EEG systems performed well above chance in the classification analysis, with a marginal advantage of the wet system over the dry. Critically, all aforementioned electrophysiological metrics showed significant positive correlations (r = 0.54-0.89) between the two EEG systems. This multitude of measures provides a comprehensive comparison that captures different aspects of EEG data, including temporal precision, frequency domain as well as multivariate patterns of activity. Taken together, our results indicate that the dry EEG system used in this experiment can effectively record electrophysiological measures commonly used across the research and clinical contexts with comparable quality to the conventional wet EEG system.
机译:由于相对较快的电极制备和避免将凝胶施加到受试者的毛发,干燥电极技术的最新进展促进了以前不可能的情况下的脑电图的记录。然而,为了成为真正的替代方案,应将这些系统与临床或研究应用中常用的最先进的湿脑电图系统进行比较。在我们的研究中,我们使用湿主动电极和由​​干无源电极组成的紧凑型和无线F1 eeg系统在传统和有线BioSemi EEG系统之间进行系统比较电极应用速度,主题舒适度和最严重的电生理学信号质量。所有受试者(n = 27)参加在不同天两个记录会话,一个与湿EEG系统和一个与干EEG系统,其中,所述会话命令是跨学科抵消。在每个会话中,我们在单独的休息期间录制了他们的eeg,眼睛睁开并关闭,然后是两个版本的串行视觉演示目标检测任务。每个任务组件允许反映数据的不同特性的神经测量,包括规范低频带中的光谱功率,事件相关的潜在组件(具体地,P3B)以及基于机器学习的单试性分类。在两个系统的性能在大多数措施,包括P3b的振幅和地形,以及低频(θ,α,和β)谱功率在休息相似。两个EEG系统在分类​​分析中的机会上表现良好,在干燥的湿系统上具有边际优势。批判性地,两个EEG系统之间的所有上述电生理度量显示出显着的正相关(R = 0.54-0.89)。这种众多措施提供了全面的比较,可捕获EEG数据的不同方面,包括时间精度,频域以及多变量的活动模式。我们的结果表明,该实验中使用的干脑电图系统可以有效记录常规质量的研究和临床环境中常用的电生理学措施与传统的湿脑电图系统。

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