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Validating a LEGO-Like EEG Headset for a Simultaneous Recording of Wet- and Dry-Electrode Systems During Treadmill Walking

机译:验证类似于LEGO的EEG耳机以在跑步机行走过程中同时记录湿式和干式电极系统

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Recent mobile and wearable electroencephalogram (EEG)-sensing technologies have been demonstrated to be effective for measuring rapid changes of spatio-spectral EEG correlates of brain and cognitive functions of interest with more ecologically natural settings. However, commercial EEG products are available commonly with a fixed headset in terms of the number of electrodes and their locations to the scalp practically constrains their generalizability for different demands of EEG and brain-computer interface (BCI) study. While most progress focused on innovation of sensing hardware and conductive electrodes, less effort has been done to renovate mechanical structures of an EEG headset. Recently, an electrode-holder assembly infrastructure was designed to be capable of unlimitedly (re)assembling a desired n-channel electrode headset through a set of primary elements (i.e., LEGO-like headset). The present work empirically demonstrated one of its advantage regarding coordinating the homogeneous or heterogeneous sensors covering the target regions of the brain. Towards this objective, an 8-channel LEGO headset was assembled to conduct a simultaneous event-related potential (ERP) recording of the wet- and dry-electrode EEG systems and testify their signal quality during standing still versus treadmill walking. The results showed that both systems returned a comparable P300 signal-to-noise ratio (SNR) for standing, yet the dry system was more susceptible to the movement artifacts during slow walking. The LEGO headset infrastructure facilitates a desired benchmark study, e.g., comparing the signal quality of different electrodes on non-stationary subjects conducted in this work, or a specific EEG and BCI application.
机译:事实证明,最新的移动和可穿戴式脑电图(EEG)传感技术可有效地测量具有更自然生态环境的大脑和感兴趣的认知功能的时空光谱脑电图相关性的快速变化。但是,就电极的数量及其在头皮上的位置而言,带有固定耳机的商用EEG产品通常都可以买到,这实际上限制了它们针对EEG和脑机接口(BCI)研究的不同需求的通用性。尽管大多数进展都集中在传感硬件和导电电极的创新上,但为更新EEG头戴式耳机的机械结构所做的工作却很少。最近,电极支架组装基础设施被设计为能够通过一组主要元件(即,类似乐高的耳机)来无限地(重新)组装期望的n通道电极耳机。本工作从经验上证明了其在协调覆盖大脑目标区域的同质或异质传感器方面的优势之一。为了达到这个目标,组装了一个8通道的LEGO耳机,以同时记录湿电极和干电极EEG系统的事件相关电位(ERP),并在静止与跑步机行走时证明其信号质量。结果表明,两个系统的站立状态均具有可比的P300信噪比(SNR),而干燥的系统在慢速行走时更容易受到运动伪影的影响。乐高耳机基础设施有助于进行理想的基准研究,例如,比较这项工作或特定的EEG和BCI应用中进行的非平稳受试者的不同电极的信号质量。

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