Brain-wide neural co-activations in resting human
Loading...
Date
Authors
Ding, Lei
Shou, Goufa
Cha, Yoon-Hee
Sweeney, John A.
Yuan, Han
Journal Title
Journal ISSN
Volume Title
Publisher
C
Data Nutrition Label71/100
- Completeness66
- Licensing100
- Openness16
- Provenance100
Assessed Jul 1, 2026
Abstract
Spontaneous neural activity in human as assessed with resting-state functional magnetic resonance imaging (fMRI) exhibits brain-wide coordinated patterns in the frequency of < 0.1 Hz. However, understanding of fast brain-wide networks at the timescales of neuronal events (milliseconds to sub-seconds) and their spatial, spectral, and transitional characteristics remain limited due to the temporal constraints of hemodynamic signals. With milli-second resolution and whole-head coverage, scalp-based electroencephalography (EEG) provides a unique window into brain-wide networks with neuronal-timescale dynamics, shedding light on the organizing principles of brain functions. Using the state-of-the-art signal processing techniques, we reconstructed cortical neural tomography from resting-state EEG and extracted component-based co-activation patterns (cCAPs). These cCAPs revealed brain-wide intrinsic networks and their dynamics, indicating the configuration/reconfiguration of resting human brains into recurring and transitional functional states, which are featured with the prominent spatial phenomena of global patterns and anti-state pairs of co-(de)activations. Rich oscillational structures across a wide frequency band (i.e., 0.6 Hz, 5 Hz, and 10 Hz) were embedded in the nonstationary dynamics of these functional states. We further identified a superstructure that regulated between-state immediate and long-range transitions involving the entire set of identified cCAPs and governed a significant aspect of brain-wide network dynamics. These findings demonstrated how resting-state EEG data can be functionally decomposed using cCAPs to reveal rich dynamic structures of brain-wide human neural activations.
Description
Citation
Ding, L., Shou, G., Cha, Y.H., Sweeney, J.A., Yuan, H., 2021. Brain-wide neural co-activations in resting human.Neuroimage, 2022, 119461, https://doi.org/10.1016/j.neuroimage.2022.119461.
Related file
Notes
Collections
Endorsement
Review
Supplemented By
Referenced By
Collection Detail
# of Isolates from RBM
# of Isolates from TV8
Creative Commons license
Except where otherwised noted, this item's license is described as Attribution-NoDerivatives 4.0 International
