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Novel Single-Channel EEG Features Correlate with Working Memory Load

机译:新颖的单通道EEG功能与工作内存负载相关联

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Working Memory (WM) load is a cognitive feature, which is highly correlated with mental effort. Theta power, among other neurological biomarkers, shows increased activity with increasing WM load. These correspondences frequently break down in individuals with cognitive decline, making WM load biomarkers a potentially valuable tool for early detection of cognitive impairment. However, such studies used multiple-channel EEG headsets, which are not easy to use and accessible. Here we used a single-channel EEG set (Aurora by Neurosteer®) and evaluated the ability of novel features, previously extracted on a different dataset, to serve as WM load biomarkers. In a single experiment, fourteen participants underscored the widely used n-back task while their brain activity was recorded with the mobile EEG device. Frontal theta power, as well as two novel features, significantly correlated with the levels of WM load. However, the two novel features exhibited higher sensitivity to lower WM load changes. These more sensitive biomarkers of WM load are a promising tool for mass screening of mild cognitive impairment.
机译:工作记忆(WM)负载是一种认知功能,这是非常有精神的努力密切相关。西塔电源,其他神经系统中的生物标记物,显示随着WM负载增加活动。这些书信频频打破与认知能力下降的个体,使得WM负载的生物标志物,以便及早发现认知功能障碍的潜在有价值的工具。然而,这样的研究中使用多通道EEG耳机,这是不容易的使用和访问。在这里,我们使用单信道EEG集(由Neurosteer®极光)和评价的新颖特征,作为WM负载生物标记物的能力,预先在不同的数据集提取。在一个实验中,十四与会者强调广泛使用的正背任务,而他们的大脑活动与移动设备脑电图记录。额叶THETA功率,以及两个新颖特征,与WM负载水平显著相关。然而,这两个新的特征表现出更高的灵敏度来降低WM负载变化。这些WM负载比较敏感的生物标志物是轻度认知功能障碍筛查一个行之有效的手段。

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