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三极同心环电极空间选择性的提高与互信息的降低

Improvement of spatial selectivity and decrease of mutual information of tri-polar concentric ring electrodes.

作者信息

Koka Kanthaiah, Besio Walter G

机构信息

Department of Physiology and Biophysics, University of Colorado at Denver Health Sciences Center, Denver, CO, USA.

出版信息

J Neurosci Methods. 2007 Sep 30;165(2):216-22. doi: 10.1016/j.jneumeth.2007.06.007. Epub 2007 Jun 15.

Abstract

Electroencephalography (EEG) signals are spatio-temporal in nature. EEG has very good temporal resolution but typically does not possess high spatial resolution. The surface Laplacian enhances the spatial resolution and selectivity of the surface electrical activity recording. Concentric ring electrodes have been shown to estimate the surface Laplacian directly with significantly better spatial resolution than conventional electrodes. For this report movement-related potentials (MRP) signals were analyzed. The signals were recorded using tri-polar ring electrodes in the original configuration as well as in bipolar and unipolar configurations achieved by excluding or shorting recording surfaces of the tri-polar version, respectively. The electrodes were placed in an array scheme of 35, encompassing the area between Fz-Cz-Pz-P3-T5-T3-F7-F3 centered on C3. Data were measured in five steps sequentially using only seven electrodes at a time, displaced after each step and aligned during evaluation later. Subjects were cued to press a micro-switch. The signal-to-noise ratio (SNR), spatial selectivity, and mutual information (MI) of the MRP signals recorded with the different electrode systems were compared. The MRP signals recorded with the tri-polar concentric ring electrode system have significantly higher SNR than from bipolar concentric ring electrode and conventional disc electrode emulations. The tri-polar electrodes have also shown significantly higher spatial selectivity as well as significantly less mutual information between locations than the other two electrode configurations tested. These characteristics should make tri-polar concentric electrodes beneficial for EEG applications.

摘要

脑电图(EEG)信号本质上具有时空特性。EEG具有很好的时间分辨率,但通常不具备高空间分辨率。表面拉普拉斯算子可提高表面电活动记录的空间分辨率和选择性。已证明同心环电极能直接估计表面拉普拉斯算子,其空间分辨率比传统电极显著更好。本报告分析了与运动相关的电位(MRP)信号。信号分别使用原始配置的三极环电极以及通过分别排除或短路三极版本的记录表面而实现的双极和单极配置进行记录。电极以35个的阵列方案放置,涵盖以C3为中心的Fz - Cz - Pz - P3 - T5 - T3 - F7 - F3之间的区域。每次仅使用七个电极按顺序分五步测量数据,每步后电极移位,并在后续评估时对齐。提示受试者按下微动开关。比较了不同电极系统记录的MRP信号的信噪比(SNR)、空间选择性和互信息(MI)。用三极同心环电极系统记录的MRP信号的SNR明显高于双极同心环电极和传统圆盘电极模拟记录的信号。与测试的其他两种电极配置相比,三极电极还显示出显著更高的空间选择性以及位置之间显著更少的互信息。这些特性应使三极同心电极有利于EEG应用。

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