Resting-state functional connectivity emerges from structurally and dynamically shaped slow linear fluctuations.
Brain fluctuations at rest are not random but are structured in spatial patterns of correlated activity across different brain areas. The question of how resting-state functional connectivity (FC) emerges from the brain's anatomical connections has motivated several experimental and computation...
Huvudupphovsmän: | Deco, G, Ponce-Alvarez, A, Mantini, D, Romani, G, Hagmann, P, Corbetta, M |
---|---|
Materialtyp: | Journal article |
Språk: | English |
Publicerad: |
2013
|
Liknande verk
Liknande verk
-
Resting-state temporal synchronization networks emerge from connectivity topology and heterogeneity.
av: Adrián Ponce-Alvarez, et al.
Publicerad: (2015-02-01) -
Functional connectivity in resting-state fMRI: is linear correlation sufficient?
av: Hlinka, J, et al.
Publicerad: (2011) -
How local excitation-inhibition ratio impacts the whole brain dynamics.
av: Deco, G, et al.
Publicerad: (2014) -
Electrophysiological signatures of resting state networks in the human brain.
av: Mantini, D, et al.
Publicerad: (2007) -
A signal-processing pipeline for magnetoencephalography resting-state networks.
av: Mantini, D, et al.
Publicerad: (2011)