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The effect of miniaturization and galvanic separation of EEG sensor devices in an auditory attention detection task

机译:脑电传感器设备的小型化和电流分离在听觉注意检测任务中的作用

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Recent technological advances in the design of concealable miniature electroencephalography (mini-EEG) devices are paving the way towards 24/7 neuromonitoring applications in daily life. However, such mini-EEG devices only cover a small area and record EEG over much shorter inter- electrode distances than in traditional EEG headsets. These drawbacks can potentially be compensated for by deploying a multitude of such mini-EEG devices and then jointly processing their recorded EEG signals. In this study, we simulate and investigate the effect of using such multi-node EEG recordings in which the nodes are galvanically separated from each other, and only use their internal electrodes to make short- distance EEG recordings. We focus on a use-case in auditory attention detection (AAD), and we demonstrate that the AAD performance using galvanically separated short-distance EEG measurements is comparable to using an equal number of long- distance EEG measurements if in both cases the electrodes are optimally placed on the scalp. To this end, we use a channel selection method based on a modified version of the least absolute shrinkage and selection operator (LASSO) technique, viz. the group-LASSO, in order to find these optimal locations.
机译:隐藏式微型脑电图(mini-EEG)设备设计的最新技术进展为日常生活中的24/7神经监测应用铺平了道路。但是,与传统的EEG头戴式受话器相比,这种微型EEG装置仅覆盖一小部分区域并在极短的电极间距离内记录EEG。通过部署大量的此类微型EEG设备,然后共同处理其记录的EEG信号,可以潜在地弥补这些缺陷。在这项研究中,我们模拟并研究了使用这种多节点EEG记录的效果,在这些记录中,各节点彼此电隔离,仅使用其内部电极进行短距离EEG记录。我们将重点放在听觉注意检测(AAD)的用例上,并且我们证明,如果在两种情况下,电极均使用电隔离的短距离EEG测量,则AAD性能可与使用相同数量的长距离EEG测量相媲美最佳放置在头皮上。为此,我们使用基于最小绝对收缩和选择算子(LASSO)技术的改进版本的频道选择方法。组LASSO,以便找到这些最佳位置。

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