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通过使用全局相干性分析来跟踪全身麻醉下的大脑状态。

Tracking brain states under general anesthesia by using global coherence analysis.

机构信息

Department of Anesthesia, Critical Care and Pain Medicine, Massachusetts General Hospital, Boston, MA 02114, USA.

出版信息

Proc Natl Acad Sci U S A. 2011 May 24;108(21):8832-7. doi: 10.1073/pnas.1017041108. Epub 2011 May 9.

Abstract

Time and frequency domain analyses of scalp EEG recordings are widely used to track changes in brain states under general anesthesia. Although these analyses have suggested that different spatial patterns are associated with changes in the state of general anesthesia, the extent to which these patterns are spatially coordinated has not been systematically characterized. Global coherence, the ratio of the largest eigenvalue to the sum of the eigenvalues of the cross-spectral matrix at a given frequency and time, has been used to analyze the spatiotemporal dynamics of multivariate time-series. Using 64-lead EEG recorded from human subjects receiving computer-controlled infusions of the anesthetic propofol, we used surface Laplacian referencing combined with spectral and global coherence analyses to track the spatiotemporal dynamics of the brain's anesthetic state. During unconsciousness the spectrograms in the frontal leads showed increasing α (8-12 Hz) and δ power (0-4 Hz) and in the occipital leads δ power greater than α power. The global coherence detected strong coordinated α activity in the occipital leads in the awake state that shifted to the frontal leads during unconsciousness. It revealed a lack of coordinated δ activity during both the awake and unconscious states. Although strong frontal power during general anesthesia-induced unconsciousness--termed anteriorization--is well known, its possible association with strong α range global coherence suggests highly coordinated spatial activity. Our findings suggest that combined spectral and global coherence analyses may offer a new approach to tracking brain states under general anesthesia.

摘要

头皮 EEG 记录的时频域分析广泛用于跟踪全身麻醉下脑状态的变化。虽然这些分析表明不同的空间模式与全身麻醉状态的变化有关,但这些模式在空间上的协调程度尚未得到系统表征。全局相干性是给定频率和时间的互谱矩阵的最大特征值与特征值之和的比值,已被用于分析多变量时间序列的时空动力学。使用从接受计算机控制的麻醉异丙酚输注的人类受试者记录的 64 导联 EEG,我们使用表面拉普拉斯参考结合频谱和全局相干性分析来跟踪大脑麻醉状态的时空动力学。在无意识状态下,额导联的频谱图显示出增加的α(8-12 Hz)和δ功率(0-4 Hz),而枕导联的δ功率大于α功率。全局相干性检测到在清醒状态下枕叶导联中存在强烈的协调α活动,而在无意识状态下则转移到额叶导联。它揭示了在清醒和无意识状态下都缺乏协调的δ活动。尽管全身麻醉诱导的无意识状态下的强烈额叶功率——称为前化——是众所周知的,但它与强烈的α频带全局相干性的可能关联表明存在高度协调的空间活动。我们的发现表明,联合频谱和全局相干性分析可能为跟踪全身麻醉下的大脑状态提供一种新方法。

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