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NeuroMonitor ambulatory EEG device: Comparative analysis and its application for cognitive load assessment

机译:NeuroMonitor动态脑电图设备:对比分析及其在认知负荷评估中的应用

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We have previously presented a wireless ambulatory EEG device (NeuroMonitor) to non-invasively monitor prefrontal cortex scalp EEG activity in real-life settings. This paper discusses analysis and application of data acquired using this device. We assess the device data against a commercially available, clinical grade Neuroscan SynAmps RT EEG system. For the comparison, temporal statistical measures and Power Spectral Density (PSD) are computed for the simultaneous recordings from both devices from (nearly) identical electrode locations. Although the analog signal processing, sampling, and data recording specifications are slightly different for these devices (e.g., filter specifications, ADC - NeuroMonitor: 16 bit and Neuroscan: 24 bit, electrodes - NeuroMonitor: GS26 Pre-gelled Disposable, Neuroscan: Ag/AgCl reusable EEG disc electrodes), the temporal signals and the PSD of two devices had sufficient correlation. The paper also describes pilot data collection for a test protocol to determine cognitive load using the NeuroMonitor device. For analyzing attention levels for 5 different tasks, EEG rhythms (Alpha, Beta and Theta) are extracted and cognitive load index (CLI) is computed. Results show variations in the PSD of these rhythms with respect to corresponding expected cognitive loads in attention-related and relaxed tasks. This study validates the NeuroMonitor ambulatory EEG device data and shows a use-case for real-life cognitive load studies.
机译:我们之前已经提出了一种无线动态脑电图设备(NeuroMonitor),用于在现实生活中无创地监测前额叶皮层头皮脑电图活动。本文讨论了使用此设备获取的数据的分析和应用。我们根据市售的临床级Neuroscan SynAmps RT EEG系统评估设备数据。为了进行比较,从(几乎)相同的电极位置为两个设备的同时记录计算了时间统计量度和功率谱密度(PSD)。尽管这些设备的模拟信号处理,采样和数据记录规格略有不同(例如,滤波器规格,ADC-NeuroMonitor:16位和Neuroscan:24位,电极-NeuroMonitor:GS26预凝胶一次性,Neuroscan:Ag / AgCl可重复使用的EEG盘电极),两个设备的时间信号和PSD具有足够的相关性。本文还介绍了使用NeuroMonitor设备收集用于测试协议以确定认知负荷的试验数据。为了分析5个不同任务的注意力水平,提取了脑电节律(Alpha,Beta和Theta)并计算了认知负荷指数(CLI)。结果显示,在与注意力相关和放松的任务中,相对于相应的预期认知负荷,这些节律的PSD发生了变化。这项研究验证了NeuroMonitor动态脑电图设备数据,并显示了现实生活中的认知负荷研究的用例。

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