Scinovex
articleTop 1% cited

Network Centrality in the Human Functional Connectome

Cerebral Cortex · 2011 · Vol. 22(8) · pp. 1862–1875
Xi‐Nian ZuoRoss C. EhmkeMaarten MennesDavide ImperatiF. Xavier CastellanosOlaf SpornsMichael P. Milham

Abstract

The network architecture of functional connectivity within the human brain connectome is poorly understood at the voxel level. Here, using resting state functional magnetic resonance imaging data from 1003 healthy adults, we investigate a broad array of network centrality measures to provide novel insights into connectivity within the whole-brain functional network (i.e., the functional connectome). We first assemble and visualize the voxel-wise (4 mm) functional connectome as a functional network. We then demonstrate that each centrality measure captures different aspects of connectivity, highlighting the importance of considering both global and local connectivity properties of the functional connectome. Beyond "detecting functional hubs," we treat centrality as measures of functional connectivity within the brain connectome and demonstrate their reliability and phenotypic correlates (i.e., age and sex). Specifically, our analyses reveal age-related decreases in degree centrality, but not eigenvector centrality, within precuneus and posterior cingulate regions. This implies that while local or (direct) connectivity decreases with age, connections with hub-like regions within the brain remain stable with age at a global level. In sum, these findings demonstrate the nonredundancy of various centrality measures and raise questions regarding their underlying physiological mechanisms that may be relevant to the study of neurodegenerative and psychiatric disorders.

Functional Brain Connectivity StudiesNeural dynamics and brain functionMental Health Research TopicsCentralityConnectomeFunctional magnetic resonance imagingHuman Connectome ProjectPrecuneusNeuroscienceFunctional connectivityVoxelResting state fMRIPosterior cingulate

MeSH terms

AdultAgingAlgorithmsBrainBrain MappingFemaleHumansMagnetic Resonance ImagingMaleNerve NetNeural PathwaysSex Characteristics
Citations
1,183
FWCI
21.22
field-weighted impact
References
93
Percentile
100%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.