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Frequency specific interactions of MEG resting state activity within and across brain networks as revealed by the Multivariate Interaction Measure

机译:多元交互作用量度显示MEG静止状态活动在脑内和跨脑网络的频率特异性相互作用

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摘要

Resting state networks (RSNs) are sets of brain regions exhibiting temporally coherent activity fluctuations in the absence of imposed task structure. RSNs have been extensively studied with fMRI in the infra-slow frequency range (nominally < 10−1 Hz). The topography of fMRI RSNs reflects stationary temporal correlation over minutes. However, neuronal communication occurs on a much faster time scale, at frequencies nominally in the range of 100 – 102 Hz. We examined phase-shifted interactions in the delta (2–3.5 Hz), theta (4–7 Hz), alpha (8–12 Hz) and beta (13–30 Hz) frequency bands of resting-state source space MEG signals. These analyses were conducted between nodes of the dorsal attention network (DAN), one of the most robust RSNs, and between the DAN and other networks. Phase shifted interactions were mapped by the Multivariate Interaction Measure (MIM), a measure of true interaction constructed from the maximization of imaginary coherency in the virtual channels comprised of voxel signals in source space. Non zero-phase interactions occurred between homologous left and right hemisphere regions of the DAN in the delta and alpha frequency bands. Even stronger non zero-phase interactions were detected between networks. Visual regions bilaterally showed phase-shifted interactions in the alpha band with regions of the DAN. Bilateral somatomotor regions interacted with DAN nodes in the beta band. These results demonstrate the existence of consistent, frequency specific phase-shifted interactions on a millisecond time scale between cortical regions within RSN as well as across RSNs.
机译:静止状态网络(RSN)是在没有强加的任务结构的情况下表现出时间上一致的活动波动的大脑区域集。通过fMRI在慢速频率范围(标称<10 -1 Hz)中对RSN进行了广泛的研究。 fMRI RSN的地形反映了几分钟内的平稳时间相关性。但是,神经元交流发生的时间尺度要快得多,频率通常在10 0 – 10 2 Hz范围内。我们研究了静止状态源空间MEG信号的增量(2–3.5 Hz),θ(4–7 Hz),alpha(8–12 Hz)和beta(13–30 Hz)频带中的相移相互作用。这些分析是在最健壮的RSN之一背注意力网络(DAN)的节点之间以及DAN与其他网络之间进行的。通过多变量交互作用测度(MIM)映射相移的交互作用,该交互作用是根据源空间中体素信号组成的虚拟通道中虚构相干性最大化而构造的真实交互作用的量度。在三角洲和阿尔法频段的DAN左右半球同源区域之间发生了非零相位相互作用。在网络之间检测到甚至更强的非零相相互作用。双边的视觉区域显示了α波段与DAN区域的相移相互作用。双边躯体运动区域与β带中的DAN节点相互作用。这些结果表明,在毫秒时间内,RSN内部以及整个RSN皮质区域之间存在一致的,特定于频率的相移相互作用。

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