Little is known about the brain-wide correlation of electrophysiological signals. We found that spontaneous oscillatory neuronal activity exhibited frequency-specific spatial correlation structure in the human brain. We developed an analysis approach that discounts spurious correlation of signal power caused by the limited spatial resolution of electrophysiological measures. We applied this approach to source estimates of spontaneous neuronal activity reconstructed from magnetoencephalography. Overall, correlation of power across cortical regions was strongest in the alpha to beta frequency range (8-32 Hz) and correlation patterns depended on the underlying oscillation frequency. Global hubs resided in the medial temporal lobe in the theta ...
The human brain spontaneously generates large-scale network oscillations at around 10 and 20 Hz. The...
Contains fulltext : 158451.pdf (publisher's version ) (Open Access)Oscillatory neu...
The intrinsic organizational structure of the brain is reflected in spontaneous brain oscillations. ...
Phase synchronization among neuronal oscillations within the same frequency band has been hypothesiz...
The human brain spontaneously generates neural oscillations with a large variability in frequency, a...
SummaryThe brain-wide correlation of hemodynamic signals as measured with BOLD fMRI is widely studie...
SummaryNormal brain function requires the dynamic interaction of functionally specialized but widely...
Frequency-specific oscillations and phase-coupling of neuronal populations are essential mechanisms ...
Presence of long-range temporal correlations in neuronal oscillations is thought to be beneficial fo...
Systems-level neuronal mechanisms that coordinate the temporally, anatomically, and functionally dis...
Normal brain function requires the dynamic interaction of functionally specialized but widely distri...
Individual differences in brain organization exist at many spatiotemporal scales and underlie the di...
This Thesis is involved with neuronal oscillations in the human brain and their coordination across ...
Brain activity is characterized by oscillatory activity that spans at least two orders of magnitude....
Copyright: © 2020 Ito et al. This is an open access article distributed under the terms of the Creat...
The human brain spontaneously generates large-scale network oscillations at around 10 and 20 Hz. The...
Contains fulltext : 158451.pdf (publisher's version ) (Open Access)Oscillatory neu...
The intrinsic organizational structure of the brain is reflected in spontaneous brain oscillations. ...
Phase synchronization among neuronal oscillations within the same frequency band has been hypothesiz...
The human brain spontaneously generates neural oscillations with a large variability in frequency, a...
SummaryThe brain-wide correlation of hemodynamic signals as measured with BOLD fMRI is widely studie...
SummaryNormal brain function requires the dynamic interaction of functionally specialized but widely...
Frequency-specific oscillations and phase-coupling of neuronal populations are essential mechanisms ...
Presence of long-range temporal correlations in neuronal oscillations is thought to be beneficial fo...
Systems-level neuronal mechanisms that coordinate the temporally, anatomically, and functionally dis...
Normal brain function requires the dynamic interaction of functionally specialized but widely distri...
Individual differences in brain organization exist at many spatiotemporal scales and underlie the di...
This Thesis is involved with neuronal oscillations in the human brain and their coordination across ...
Brain activity is characterized by oscillatory activity that spans at least two orders of magnitude....
Copyright: © 2020 Ito et al. This is an open access article distributed under the terms of the Creat...
The human brain spontaneously generates large-scale network oscillations at around 10 and 20 Hz. The...
Contains fulltext : 158451.pdf (publisher's version ) (Open Access)Oscillatory neu...
The intrinsic organizational structure of the brain is reflected in spontaneous brain oscillations. ...