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A Recurrent Increase of Synchronization in the EEG Continues from Waking throughout NREM and REM Sleep

机译:在整个NREM和REM睡眠中苏醒后EEG的同步性不断增加

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摘要

Pointwise transinformation (PTI) provides a quantitative nonlinear approach to spatiotemporal synchronization patterns of the rhythms of coupled cortical oscillators. We applied PTI to the waking and sleep EEGs of 21 healthy sleepers; we calculated the mean levels and distances of synchronized episodes and estimated the dominant frequency shift from unsynchronized to synchronized EEG segments by spectral analysis. Recurrent EEG synchronization appeared and ceased abruptly in the anterior, central, and temporal derivations; in the posterior derivations it appeared more fluctuating. This temporal dynamics of synchronization remained stable throughout all states of vigilance, while the dominant frequencies of synchronized phases changed markedly. Mean synchronization had high frontal and occipital levels and low central and midtemporal levels. Thus, a fundamental coupling pattern with recurrent increases of synchronization in the EEG (“RISE”) seems to exist during the brain's resting state. The generators of RISE could be coupled corticocortical neuronal assemblies which might be modulated by subcortical structures. RISE designates the recurrence of transiently synchronized cortical microstates that are independent of specific EEG waves, the spectral content of the EEG, and especially the current state of vigilance. Therefore, it might be suited for EEG analysis in clinical situations without stable vigilance.
机译:点向转换信息(PTI)提供了一种定量的非线性方法,用于耦合皮质振荡器的节奏的时空同步模式。我们将PTI应用于21个健康睡眠者的苏醒和睡眠EEG;我们计算了同步情节的平均水平和距离,并通过频谱分析估计了从不同步到同步EEG段的主要频移。周期性的脑电图同步出现,并在前,中央和颞叶中突然停止。在后导数中,它似乎更加波动。同步的这种时间动态在所有警戒状态下都保持稳定,而同步相位的主要频率发生了显着变化。平均同步具有较高的额叶和枕叶水平以及较低的中央和颞中水平。因此,在脑部静止状态期间似乎存在一种基本耦合模式,其脑电图(“ RISE”)中反复出现同步性增加。 RISE的生成器可以耦合皮层皮层神经元组件,可能由皮层下结构调节。 RISE表示瞬态同步皮层微状态的复发,该状态独立于特定的EEG波,EEG的频谱含量,尤其是当前的警惕状态。因此,如果没有稳定的警惕性,它可能适合在临床情况下进行脑电图分析。

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