脑磁图
功能连接
神经科学
动态功能连接
默认模式网络
脑电图
功能磁共振成像
神经生理学
功能成像
静息状态功能磁共振成像
功能集成
心理学
计算机科学
数学分析
数学
积分方程
作者
Nambi Nallasamy,Doris Y. Tsao
标识
DOI:10.1177/1073858410374126
摘要
Functional connectivity has been defined as “the temporal correlation of a neurophysiological index measured in different brain areas.” Since its definition, functional connectivity analysis has been used to describe temporal correlations across multiple spatial scales in PET imaging, single-unit and local field potential recordings, electroencephalography (EEG) and magnetoencephalography (MEG), optical imaging, and fMRI. These findings have been used to identify coactivating brain regions as functional networks. In some instances, as in the case of the default mode network (DMN), functional connectivity has been used to describe “modes” of brain function. The opportunity to probe the anesthetized state using functional connectivity analysis has given rise to a diverse literature over the past two decades. The examination of functional connectivity in the anesthetized state is of relevance to both anesthesiologists and neuroscientists, as it has the potential to elucidate still unclear mechanisms of anesthesia while offering insight into intrinsic functional activity in the brain. Complications have arisen, however, in the form of a lack of standardization of anesthetics, dosages, depths of anesthesia, and methods of functional connectivity analysis across studies. The present work attempts to examine, elucidate, and integrate the insight that functional connectivity analysis of the anesthetized state has generated thus far.
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