Univ. de Bordeaux, Bordeaux, France.
J Neurophysiol. 2011 Jun;105(6):2753-63. doi: 10.1152/jn.00895.2010. Epub 2011 Mar 23.
Spontaneous brain activity was mapped with functional MRI (fMRI) in a sample of 180 subjects while in a conscious resting-state condition. With the use of independent component analysis (ICA) of each individual fMRI signal and classification of the ICA-defined components across subjects, a set of 23 resting-state networks (RNs) was identified. Functional connectivity between each pair of RNs was assessed using temporal correlation analyses in the 0.01- to 0.1-Hz frequency band, and the corresponding set of correlation coefficients was used to obtain a hierarchical clustering of the 23 RNs. At the highest hierarchical level, we found two anticorrelated systems in charge of intrinsic and extrinsic processing, respectively. At a lower level, the intrinsic system appears to be partitioned in three modules that subserve generation of spontaneous thoughts (M1a; default mode), inner maintenance and manipulation of information (M1b), and cognitive control and switching activity (M1c), respectively. The extrinsic system was found to be made of two distinct modules: one including primary somatosensory and auditory areas and the dorsal attentional network (M2a) and the other encompassing the visual areas (M2b). Functional connectivity analyses revealed that M1b played a central role in the functioning of the intrinsic system, whereas M1c seems to mediate exchange of information between the intrinsic and extrinsic systems.
在一项包含 180 名被试的研究中,我们对被试在静息状态下的大脑自发活动进行了功能磁共振成像(fMRI)扫描。通过对每个个体 fMRI 信号进行独立成分分析(ICA),并对 ICA 定义的成分在被试间进行分类,我们确定了一组 23 个静息态网络(RNs)。在 0.01-0.1 Hz 的频率带内,我们使用时间相关分析评估了每个 RN 对之间的功能连接,并使用相应的相关系数集对 23 个 RN 进行了层次聚类。在最高层次上,我们发现了两个相互拮抗的系统,分别负责内在和外在加工。在较低的层次上,内在系统似乎被分为三个模块,分别负责自发思维的产生(M1a;默认模式)、信息的内在维持和操作(M1b)以及认知控制和切换活动(M1c)。外在系统由两个不同的模块组成:一个包括初级体感和听觉区域以及背侧注意网络(M2a),另一个包括视觉区域(M2b)。功能连接分析表明,M1b 在内在系统的功能中起着核心作用,而 M1c 似乎介导了内在和外在系统之间的信息交换。