Rich-Club Organization of the Human Connectome
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Summary
It is demonstrated that brain hubs form a so-called “rich club,” characterized by a tendency for high-degree nodes to be more densely connected among themselves than nodes of a lower degree, providing important information on the higher-level topology of the brain network.
- Type
- article
- Published
- 2011-11-02
- Cited by
- 2,285
- References
- 62
- Access
- Open access
- OpenAlex
- https://openalex.org/W2012559638
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:2943399
Keywords
Connectome, Neuroscience, Human brain, Precuneus, Thalamus
References
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- A Model-Based Method for Retrospective Correction of Geometric Distortions in Diffusion-Weighted EPI
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Cited by
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- Delayed convergence between brain network structure and function in rolandic epilepsy
- Multiscale Enaction Model (MEM): the case of complexity and “context-sensitivity” in vision
- Sleepwalking episodes are preceded by arousal-related activation in the cingulate motor area: EEG current density imaging.
- Rich-Cores in Networks
- Interoceptive predictions in the brain
- Disrupted brain connectivity networks in acute ischemic stroke patients
- The connectomes of males and females with autism spectrum disorder have significantly different white matter connectivity densities
- Whole‐brain structural connectivity in dyskinetic cerebral palsy and its association with motor and cognitive function
- The Ongoing Search for the Neuronal Correlate of Consciousness
- Global and local complexity of intracranial EEG decreases during NREM sleep
- Effective connectivity in the default mode network is distinctively disrupted in Alzheimer's disease—A simultaneous resting‐state FDG‐PET/fMRI study
- Huntington's disease: Brain imaging in Huntington's disease.
- Optimizing the Analysis of Electroencephalographic Data by Dynamic Graphs
- Differentially Disrupted Functional Connectivity in Posteromedial Cortical Subregions in Alzheimer's Disease
- In a network state of mind
- Module hierarchy and centralisation in the anatomy and dynamics of human cortex
- Discovering networks altered by potential threat (“anxiety”) using Quadratic Discriminant Analysis
- Rich club network analysis shows distinct patterns of disruption in frontotemporal dementia and Alzheimer’s disease
- Between-Network Connectivity occurs in brain regions lacking layer IV input
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