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Changes in Functional Brain Connectivity in the Transition from Wakefulness to Sleep in Different EEG Bands

机译:在不同EEG频段睡眠中睡眠中的过渡过程中的功能性脑连接的变化

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The reorganization of brain connectivity patterns due to changes in conscious state is poorly understood. The aim of this study is to assess methods for characterizing brain connectivity changes in different sleep stages as compared to wakefulness, and hence identify possible biomarkers of the level of consciousness based on the topography of connectivity networks. Polysomnographic recordings were collected during a sleep experiment from five healthy young subjects. Functional coupling between electroencephalographs (EEG) signals was estimated in different EEG bands with Partial Directed Coherence (PDC) and Directed Coherence (DC), which provide a frequency domain description of directed causal dependencies among time series. Results indicate that in the theta (6) and alpha (α) bands the number of significant connections increases in the transition from sleep to wakefulness. Moreover connectivity patterns elicited in sleep are dominated by short-range connections, in contrast to long range links connecting distant areas, which are elicited in wakefulness in the a and 8 bands. An inversion in the direction of information flow from anterior-posterior to posterior-anterior is noticeable in the transition from sleep to wakefulness in the 0 and a bands. The drop of the number of long-range posterior-frontal links in the a band may be a promising indicator for the descent into sleep and perhaps anesthesia.
机译:由于有意识状态的变化而导致的脑连接模式的重组很差。本研究的目的是评估用于表征不同睡眠阶段的脑连接变化的方法,与清醒性相比,基于连接网络的形貌,识别意识水平的可能生物标志物。从五个健康的年轻科目的睡眠实验期间收集了多瘤记录。在具有部分定向的一致性(PDC)和定向相干(DC)的不同EEG频带中估计了脑电图(EEG)信号之间的功能耦合,其提供时间序列之间的定向因果依赖性的频域描述。结果表明,在θ(6)和α(α)频段中,从睡眠到觉醒的过渡时,显着连接的数量增加。此外,睡眠中引出的连接模式是由短距离连接的主导,与连接远处区域的长距离链路相比,这在A和8条带中的助出性中引发。在前后向后前后的信息流动方向上的反演在从睡眠中的过渡到0和带中的觉醒中的过渡中明显。频段中的远程前额度链路数量的滴数可以是睡眠中下降和可能麻醉的有希望的指示。

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