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Processing of EEG signals for study of coupling in brain regions for eyes open and eyes closed conditions

机译:处理脑电信号以研究睁眼和闭眼条件下大脑区域的耦合

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This paper deals with processing the EEG signals obtained from 16 spatially arranged electrodes to measure coupling or synchrony between the frontal, parietal, occipital and temporal lobes of the cerebrum under the eyes open and eyes closed conditions. This synchrony was measured using magnitude squared coherence, Short Time Fourier Transform and wavelet based coherences. We found a pattern in the time-frequency coherence as we moved from the nasion to the inion of the subject's head. The coherence pattern obtained from the wavelet approach was found to be far more capable of picking up peaks in coherence with respect to frequency when compared to the regular Fourier based coherence. We detected high synchrony between frontal polar electrodes that is missing in coherence plots between other electrode pairs. The study has potential applications in healthcare.
机译:本文处理从16个空间排列的电极获得的EEG信号,以测量在睁眼和闭眼条件下大脑的额叶,顶叶,枕叶和颞叶之间的耦合或同步。使用幅度平方相干,短时傅立叶变换和基于小波的相干来测量此同步。当我们从对象的头部从鼻子移到头部时,我们发现了时频相干的模式。与基于常规傅立叶的相干方法相比,发现从小波方法获得的相干模式具有更高的频率相干性。我们检测到正面极性电极之间的高度同步性,而其他电极对之间的相干图则缺少这种同步性。该研究在医疗保健领域具有潜在的应用。

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