Small-world and scale-free organization of voxel-based resting-state functional connectivity in the human brain
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Summary
The results are interpreted as evidence for a highly efficient organization of the functionally connected brain, in which voxels are mostly connected with their direct neighbors forming clustered sub-networks, which are held together by a small number of highly connected hub-voxels that ensure a high level of overall connectivity.
- Type
- article
- Published
- 2008-11-15
- Cited by
- 761
- References
- 71
- OpenAlex
- https://openalex.org/W2002367251
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:207170105
Keywords
Clustering coefficient, Voxel, Resting state fMRI, Complex network, Functional connectivity
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- A Data-Driven Method to Reduce the Impact of Region Size on Degree Metrics in Voxel-Wise Functional Brain Networks
- The age-related posterior-anterior shift as revealed by voxelwise analysis of functional brain networks
- Interoceptive predictions in the brain
- Multistability in Large Scale Models of Brain Activity
- Node Identification Using Inter-Regional Correlation Analysis for Mapping Detailed Connections in Resting State Networks
- In a network state of mind
- Functional network analysis of aging and Alzheimer's Disease
- A Quest for Meaning in Spontaneous Brain Activity - From fMRI to Electrophysiology to Complexity Science
- Bipolar disorder and cognitive functioning : a two-year naturalistic study
- Interactive Visualization of Functional Brain Connectivity
- A Probabilistic Model of Functional Brain Connectivity Network for Discovering Novel Biomarkers
- Neural synchronization within and between regions of the motor system
- Increased segregation of brain networks in focal epilepsy: An fMRI graph theory finding
- The role of tactile afference in shaping motor behaviour and implications for prosthetic innovation.
- Head Motion Artifacts in Functional Imaging-based Brain Connectivity Analysis
- Test-retest reliability of graph metrics of resting state MRI functional brain networks: A review.
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