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A Modeling Study Comparing The Signal-To-Noise Ratio Between Tripolar Concentric Ring And Conventional Disk Electrodes With Added Common Mode Noise

机译:利用常用模式噪声比较了大车同心环和传统磁盘电极之间的信噪比的建模研究

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Electroencephalography (EEG) has high temporal resolution, but lacks high spatial resolution even after increasing the number of electrodes. Although EEG is intended to record cerebral activity, it also records electrical activities arising from sites other than the brain, artifacts. To remove major artifacts like electrooculogram (EOG), electrocardiogram (EMG) and ECG present in EEG, many techniques have been proposed among which surface Laplacian spatial filtering has found prominence. The authors have compared a Laplacian Tripolar concentric ring electrode system to Disc electrodes in terms of the signal-to-noise ratio (SNR). A four-layer anisotropic concentric spherical head computer model was programmed, then a time-varying dipole was used to generate the scalp surface signals that would be obtained with tripolar and disc electrodes. Common mode white noise was added to the electrodes. Finally, the signal-to-noise ratio was calculated. The results show that signals from tripolar electrodes generated much better signal-to-noise ratio.
机译:脑电图(EEG)具有高的时间分辨率,但即使增加电极的数量后缺乏高的空间分辨率。尽管脑电图是用来记录大脑活动,同时也记录了从比大脑其他部位,文物产生的电活动。以除去主要假象等眼电图(EOG),心电图(EMG)和ECG存在于EEG,许多技术已被提出其中表面拉普拉斯空间滤波发现突出。作者们在信噪比(SNR)方面相比的拉普拉斯三极同心环形电极系统到光盘电极。四层各向异性同心球形头部计算机模型编程,则使用了随时间变化的偶极子,以产生将与三极和圆盘电极获得头皮表面信号。共模白噪声添加到电极。最后,信噪比被计算。结果表明,从产生好得多的信噪比三极电极,其信号。

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