寻找最佳脑电图方法:水基电极脑电图系统的实际评估。

Brain and neuroscience advances Pub Date : 2021-10-26 eCollection Date: 2021-01-01 DOI:10.1177/23982128211053698
Marta Topor, Bertram Opitz, Philip J A Dean
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摘要

该研究评估了水基电极移动脑电图系统在认知和行为神经科学中的适用性。该系统与标准的凝胶式有线系统进行了比较。在参与者完成侧手任务时,对其进行了两次脑电图记录(先使用凝胶式系统,后使用水式系统)。根据参与者和实验者的经验,报告了应用水基系统的技术和实际注意事项。经验比较的重点是脑电图数据的噪音水平、四个频段(θ、α、低β和高β)的频率功率以及事件相关成分(P300 和 ERN)。与基于凝胶的系统相比,基于水的系统记录的噪声更大,这导致在剔除伪影时数据丢失更多。在顶叶通道中,水基系统的信噪比明显较低,这影响了观察到的顶叶贝塔功率。这也导致最大 P300 活动的地形从顶叶区转移到额叶区。水基系统可能容易受到慢漂移噪声的影响,这可能会影响低频段分析的可靠性和一致性。本文提供了使用水基电极脑电图系统的实用注意事项。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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In search for the most optimal EEG method: A practical evaluation of a water-based electrode EEG system.

The study assessed a mobile electroencephalography system with water-based electrodes for its applicability in cognitive and behavioural neuroscience. It was compared to a standard gel-based wired system. Electroencephalography was recorded on two occasions (first with gel-based, then water-based system) as participants completed the flanker task. Technical and practical considerations for the application of the water-based system are reported based on participant and experimenter experiences. Empirical comparisons focused on electroencephalography data noise levels, frequency power across four bands (theta, alpha, low beta and high beta) and event-related components (P300 and ERN). The water-based system registered more noise compared to the gel-based system which resulted in increased loss of data during artefact rejection. Signal-to-noise ratio was significantly lower for the water-based system in the parietal channels which affected the observed parietal beta power. It also led to a shift in topography of the maximal P300 activity from parietal to frontal regions. The water-based system may be prone to slow drift noise which may affect the reliability and consistency of low-frequency band analyses. Practical considerations for the use of water-based electrode electroencephalography systems are provided.

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