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Coherence and phase synchrony analysis of electroencephalogram.

机译:脑电图的相干和相位同步分析。

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Phase Synchrony (PS) and coherence analyses of stochastic time series---tools to discover brain tissue pathways traveled by electrical signals---are considered for the specific purpose of processing of the electroencephalogram (EEG).; We propose the Phase Synchrony Processor (PSP), as a tool for implementing phase synchrony analysis, and examine its properties on the basis of known signals. Long observation times and wide filter bandwidths can decrease bias in PS estimates. The value of PS is affected by the difference in frequency of the sequences being analyzed and can be related to that frequency difference by the periodic sinc function.; PS analysis of the EEG shows that the average PS is higher---for a number of electrode pairs---for non-ADHD than for ADHD participants. The difference is more pronounced in the delta rhythm (0-3 Hz) and in the gamma rhythm (30-50 Hz) PS. The Euclidean classifier with electrode masking yields 66% correct classification on average for ADHD and non-ADHD subjects using the delta and gamma1 rhythms.; We observed that the average gamma1 rhythm PS is higher for the eyes closed condition than for the eyes open condition. The latter may potentially be used for vigilance monitoring. The Euclidean discriminator with electrode masking shows an average percentage of correct classification of 78% between the eyes open and eyes closed subject conditions.; We develop a model for a pair of EEG electrodes and a model-based MS coherence estimator aimed at processing short (i.e. 20 samples) EEG frames. We verify that EEG sequences can be modeled as AR(3) processes degraded by additive white noise with an average SNR of approximately 11-12 dB.; Application of the MS coherence estimator to the EEG suggests that MS coherence is generally higher for non-ADHD individuals than for ADHD participants when evaluated for the theta rhythm of EEG. Also, MS coherence is consistently higher for ADHD subjects than for the majority of non-ADHD individuals when computed for the low end of the delta rhythm (i.e. below 1 Hz).; ADHD produces more measurable effects in the frontal lobe EEG and for participants performing attention intensive tasks.
机译:随机时间序列的相位同步(PS)和相干分析-用于发现电信号传播的脑组织途径的工具-被认为是处理脑电图(EEG)的特定目的。我们提出了相位同步处理器(PSP)作为实现相位同步分析的工具,并根据已知信号检查其属性。较长的观察时间和较宽的滤波器带宽可以减少PS估计中的偏差。 PS的值受所分析序列的频率差异的影响,并且可以通过周期sinc函数与该频率差异相关。对脑电图的PS分析表明,非ADHD的平均PS(对于许多电极对)比ADHD参与者要高。差异在Δ节律(0-3 Hz)和伽马节律(30-50 Hz)PS中更为明显。带有电极遮罩的欧几里得分类器使用delta和gamma1节律,平均对ADHD和非ADHD受试者产生66%的正确分类。我们观察到,闭眼条件下的平均伽马1节律PS高于睁眼条件下的。后者可能用于警惕性监视。带有电极遮罩的欧几里德鉴别器显示,在睁眼和闭眼受试者情况下,正确分类的平均百分比为78%。我们针对一对EEG电极开发了一个模型,并针对处理短(即20个样本)EEG帧的基于模型的MS相干估计器。我们证实,EEG序列可以被建模为由平均白噪声比约为11-12 dB的加性白噪声降低的AR(3)过程。 MS相干估计器在EEG上的应用表明,在评估EEG的节律时,非ADHD个体的MS相干性通常高于ADHD参与者。同样,当以Δ节律的低端(即低于1Hz)计算时,ADHD受试者的MS相干性始终高于大多数非ADHD个体。多动症对额叶脑电图和执行注意力密集任务的参与者产生更可测量的效果。

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