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Improved Spatial Resolution of Electroencephalogram Using Tripolar Concentric Ring Electrode Sensors

机译:利用旅行车同心环电极传感器改进了脑电图的空间分辨率

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摘要

The electroencephalogram (EEG) is broadly used for research of brain activities and diagnosis of brain diseases and disorders. Although EEG provides good temporal resolution of millisecond or less, it does not provide good spatial resolution. There are two main reasons for the poor spatial resolution: the blurring effects of the head volume conductor and poor signal-to-noise ratio. We have developed a tripolar concentric ring electrode (TCRE) Laplacian sensor and now report on computer simulations comparing spatial resolution between conventional EEG disc electrode sensors and TCRE Laplacian sensors. We also performed visual evoked stimulus experiments and acquired visual evoked potentials (VEPs) from healthy human subjects. From the simulations, we found that TCRE Laplacian sensors can provide approximately a tenfold improvement in spatial resolution and pass signals from specific volumes. Placing TCRE sensors near the brain region of interest will allow passage of the wanted signals and rejection of distant interference signals. We were also able to detect VEPs on the scalp surface and show that TCREs separated VEP sources better than conventional disc electrodes.
机译:脑电图(EEG)广泛用于脑活动和脑病诊断和疾病的诊断。虽然EEG提供良好的时间分辨率毫秒或更少,但它不提供良好的空间分辨率。空间分辨率差有两种主要原因:头部体积导体的模糊效应和信噪比差。我们已经开发了三极同心环形电极(TCRE)拉普拉斯传感器和现在的计算机模拟进行比较常规EEG圆盘电极传感器和TCRE拉普拉斯传感器之间的空间分辨率报告。我们还表现出视觉诱发的刺激实验,并从健康的人类受试者获得视觉诱发电位(VEPS)。从模拟中,我们发现TCRE拉普拉斯传感器可以在空间分辨率下提供大约十倍的改进,并通过特定体积传递信号。将TCRE传感器放置在大脑区域附近,将允许通用的信号通过并拒绝远处干扰信号。我们还能够检测头皮表面上的VEPS,并显示该TCRES与传统的盘电极更好地分离VEP源。

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