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无线干电极 EEG 系统与传统有线湿电极 EEG 系统在临床应用中的比较。

Comparison between a wireless dry electrode EEG system with a conventional wired wet electrode EEG system for clinical applications.

机构信息

Department of Neurology, Otto-von-Guericke University, Leipziger Str. 44, 39120, Magdeburg, Germany.

Department of Behavioural Neurology, Leibniz Institute of Neurobiology, Brenneckestr. 6, 39120, Magdeburg, Germany.

出版信息

Sci Rep. 2020 Mar 23;10(1):5218. doi: 10.1038/s41598-020-62154-0.

Abstract

Dry electrode electroencephalogram (EEG) recording combined with wireless data transmission offers an alternative tool to conventional wet electrode EEG systems. However, the question remains whether the signal quality of dry electrode recordings is comparable to wet electrode recordings in the clinical context. We recorded the resting state EEG (rsEEG), the visual evoked potentials (VEP) and the visual P300 (P3) from 16 healthy subjects (age range: 26-79 years) and 16 neurological patients who reported subjective memory impairment (age range: 50-83 years). Each subject took part in two recordings on different days, one with 19 dry electrodes and another with 19 wet electrodes. They reported their preferred EEG system. Comparisons of the rsEEG recordings were conducted qualitatively by independent visual evaluation by two neurologists blinded to the EEG system used and quantitatively by spectral analysis of the rsEEG. The P100 visual evoked potential (VEP) and P3 event-related potential (ERP) were compared in terms of latency, amplitude and pre-stimulus noise. The majority of subjects preferred the dry electrode headset. Both neurologists reported that all rsEEG traces were comparable between the wet and dry electrode headsets. Absolute Alpha and Beta power during rest did not statistically differ between the two EEG systems (p > 0.05 in all cases). However, Theta and Delta power was slightly higher with the dry electrodes (p = 0.0004 for Theta and p < 0.0001 for Delta). For ERPs, the mean latencies and amplitudes of the P100 VEP and P3 ERP showed comparable values (p > 0.10 in all cases) with a similar spatial distribution for both wet and dry electrode systems. These results suggest that the signal quality, ease of set-up and portability of the dry electrode EEG headset used in our study comply with the needs of clinical applications.

摘要

干电极脑电图(EEG)记录与无线数据传输相结合,为传统湿电极 EEG 系统提供了一种替代工具。然而,在临床环境中,干电极记录的信号质量是否可与湿电极记录相媲美,仍存在疑问。我们记录了 16 名健康受试者(年龄范围:26-79 岁)和 16 名报告主观记忆障碍的神经科患者的静息状态脑电图(rsEEG)、视觉诱发电位(VEP)和视觉 P300(P3)。每位受试者在两天内参加了两次记录,一次使用 19 个干电极,另一次使用 19 个湿电极。他们报告了自己喜欢的 EEG 系统。通过两名对 EEG 系统使用情况不知情的神经科医生进行独立的视觉评估,对 rsEEG 记录进行定性比较,并通过 rsEEG 的频谱分析进行定量比较。在潜伏期、振幅和刺激前噪声方面,比较了 P100 视觉诱发电位(VEP)和 P3 事件相关电位(ERP)。大多数受试者更喜欢干电极耳机。两位神经科医生都报告说,在湿电极和干电极耳机之间,所有 rsEEG 迹线都可以相互比较。在两种 EEG 系统中,休息时的绝对阿尔法和贝塔功率没有统计学差异(在所有情况下,p>0.05)。然而,干电极的 theta 和 delta 功率略高(theta 时 p=0.0004,delta 时 p<0.0001)。对于 ERPs,P100 VEP 和 P3 ERP 的平均潜伏期和振幅表现出可比的值(在所有情况下,p>0.10),并且两种湿电极和干电极系统的空间分布相似。这些结果表明,我们研究中使用的干电极 EEG 耳机的信号质量、设置的简便性和便携性符合临床应用的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88d3/7090045/cd930c2c8cd9/41598_2020_62154_Fig1_HTML.jpg

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