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同步脑电图-功能磁共振成像揭示的独特时间滞后静息态网络

Distinctive time-lagged resting-state networks revealed by simultaneous EEG-fMRI.

作者信息

Feige Bernd, Spiegelhalder Kai, Kiemen Andrea, Bosch Oliver G, Tebartz van Elst Ludger, Hennig Jürgen, Seifritz Erich, Riemann Dieter

机构信息

Department of Clinical Psychology and Psychophysiology, Center for Mental Health, Freiburg University Medical Center, Hauptstraße 5, 79104 Freiburg, Germany.

Psychiatric Hospital, University of Zürich, Lenggstrasse 31, 8032 Zürich, Switzerland.

出版信息

Neuroimage. 2017 Jan 15;145(Pt A):1-10. doi: 10.1016/j.neuroimage.2016.09.027. Epub 2016 Sep 13.

Abstract

Functional activation as evidenced by blood oxygen level-dependent (BOLD) functional MRI changes or event-related EEG is known to closely follow patterns of stimulation or self-paced action. Any lags are compatible with axonal conduction velocities and neural integration times. The important analysis of resting state networks is generally based on the assumption that these principles also hold for spontaneous fluctuations in brain activity. Previous observations using simultaneous EEG and fMRI indicate that slower processes, with delays in the seconds range, determine at least part of the relationship between spontaneous EEG and fMRI. To assess this relationship systematically, we used deconvolution analysis of EEG-fMRI during the resting state, assessing the relationship between EEG frequency bands and fMRI BOLD across the whole brain while allowing for time lags of up to 10.5s. Cluster analysis, identifying similar BOLD time courses in relation to EEG band power peaks, showed a clear segregation of functional subsystems of the brain. Our analysis shows that fMRI BOLD increases commonly precede EEG power increases by seconds. Most zero-lag correlations, on the other hand, were negative. This indicates two main distinct neuromodulatory mechanisms: an "idling" mechanism of simultaneous electric and metabolic network anticorrelation and a "regulatory" mechanism in which metabolic network activity precedes increased EEG power by some seconds. This has to be taken into consideration in further studies which address the causal and functional relationship of metabolic and electric brain activity patterns.

摘要

通过血氧水平依赖(BOLD)功能磁共振成像变化或事件相关脑电图所证实的功能激活,已知与刺激模式或自主节奏动作密切相关。任何延迟都与轴突传导速度和神经整合时间相符。静息态网络的重要分析通常基于这样的假设,即这些原理也适用于大脑活动的自发波动。先前使用同步脑电图和功能磁共振成像的观察表明,在数秒范围内存在延迟的较慢过程至少部分决定了自发脑电图与功能磁共振成像之间的关系。为了系统地评估这种关系,我们在静息状态下对脑电图 - 功能磁共振成像进行了反卷积分析,在考虑长达10.5秒的时间延迟的同时,评估全脑脑电图频段与功能磁共振成像BOLD之间的关系。聚类分析确定了与脑电图频段功率峰值相关的相似BOLD时间进程,显示出大脑功能子系统的明显分离。我们的分析表明,功能磁共振成像BOLD增加通常比脑电图功率增加提前数秒。另一方面,大多数零延迟相关性为负。这表明两种主要的不同神经调节机制:一种是电网络和代谢网络同时反相关的“闲置”机制,另一种是代谢网络活动比脑电图功率增加提前数秒的“调节”机制。在进一步研究大脑代谢和电活动模式的因果关系和功能关系时,必须考虑到这一点。

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