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头皮脑电图以及LORETA模型源之间的相干性和锁相,以及微状态作为脑时空功能组织的假定机制。

Coherence and phase locking in the scalp EEG and between LORETA model sources, and microstates as putative mechanisms of brain temporo-spatial functional organization.

作者信息

Lehmann Dietrich, Faber Pascal L, Gianotti Lorena R R, Kochi Kieko, Pascual-Marqui Roberto D

机构信息

The KEY Institute for Brain-Mind Research, University Hospital of Psychiatry, CH-8029 Zurich, Switzerland.

出版信息

J Physiol Paris. 2006 Jan;99(1):29-36. doi: 10.1016/j.jphysparis.2005.06.005. Epub 2005 Jul 27.

Abstract

Brain electric mechanisms of temporary, functional binding between brain regions are studied using computation of scalp EEG coherence and phase locking, sensitive to time differences of few milliseconds. However, such results if computed from scalp data are ambiguous since electric sources are spatially oriented. Non-ambiguous results can be obtained using calculated time series of strength of intracerebral model sources. This is illustrated applying LORETA modeling to EEG during resting and meditation. During meditation, time series of LORETA model sources revealed a tendency to decreased left-right intracerebral coherence in the delta band, and to increased anterior-posterior intracerebral coherence in the theta band. An alternate conceptualization of functional binding is based on the observation that brain electric activity is discontinuous, i.e., that it occurs in chunks of up to about 100 ms duration that are detectable as quasi-stable scalp field configurations of brain electric activity, called microstates. Their functional significance is illustrated in spontaneous and event-related paradigms, where microstates associated with imagery- versus abstract-type mentation, or while reading positive versus negative emotion words showed clearly different regions of cortical activation in LORETA tomography. These data support the concept that complete brain functions of higher order such as a momentary thought might be incorporated in temporal chunks of processing in the range of tens to about 100 ms as quasi-stable brain states; during these time windows, subprocesses would be accepted as members of the ongoing chunk of processing.

摘要

利用对几毫秒时间差敏感的头皮脑电图相干性和锁相计算,研究了脑区之间暂时的、功能性联结的脑电机制。然而,从头皮数据计算得到的此类结果具有模糊性,因为电源是空间定向的。使用计算得到的脑内模型源强度的时间序列可以获得明确的结果。这通过将LORETA模型应用于静息和冥想期间的脑电图得到了说明。在冥想期间,LORETA模型源的时间序列显示,在δ波段左右脑内相干性有降低的趋势,而在θ波段前后脑内相干性有增加的趋势。功能性联结的另一种概念化基于这样的观察,即脑电活动是不连续的,也就是说,它以持续时间长达约100毫秒的片段形式出现,这些片段可被检测为脑电活动的准稳定头皮场配置,称为微状态。它们的功能意义在自发和事件相关范式中得到了说明,在这些范式中,与意象型思维与抽象型思维相关的微状态,或者在阅读积极与消极情绪词汇时,在LORETA断层扫描中显示出明显不同的皮质激活区域。这些数据支持这样的概念,即诸如瞬间思维等高阶完整脑功能可能作为准稳定脑状态纳入到数十至约100毫秒范围内的时间处理片段中;在这些时间窗口内,子过程将被视为正在进行的处理片段的一部分。

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