Scinovex
article Open AccessTop 1% cited

Network Analysis of Intrinsic Functional Brain Connectivity in Alzheimer's Disease

PLoS Computational Biology · 2008 · Vol. 4(6) · pp. e1000100–e1000100
Kaustubh SupekarVinod MenonDaniel J. RubinMark A. MusenMichael D. Greicius

Abstract

Functional brain networks detected in task-free ("resting-state") functional magnetic resonance imaging (fMRI) have a small-world architecture that reflects a robust functional organization of the brain. Here, we examined whether this functional organization is disrupted in Alzheimer's disease (AD). Task-free fMRI data from 21 AD subjects and 18 age-matched controls were obtained. Wavelet analysis was applied to the fMRI data to compute frequency-dependent correlation matrices. Correlation matrices were thresholded to create 90-node undirected-graphs of functional brain networks. Small-world metrics (characteristic path length and clustering coefficient) were computed using graph analytical methods. In the low frequency interval 0.01 to 0.05 Hz, functional brain networks in controls showed small-world organization of brain activity, characterized by a high clustering coefficient and a low characteristic path length. In contrast, functional brain networks in AD showed loss of small-world properties, characterized by a significantly lower clustering coefficient (p<0.01), indicative of disrupted local connectivity. Clustering coefficients for the left and right hippocampus were significantly lower (p<0.01) in the AD group compared to the control group. Furthermore, the clustering coefficient distinguished AD participants from the controls with a sensitivity of 72% and specificity of 78%. Our study provides new evidence that there is disrupted organization of functional brain networks in AD. Small-world metrics can characterize the functional organization of the brain in AD, and our findings further suggest that these network measures may be useful as an imaging-based biomarker to distinguish AD from healthy aging.

Functional Brain Connectivity StudiesNeural dynamics and brain functionMental Health Research TopicsClustering coefficientFunctional magnetic resonance imagingResting state fMRINeuroscienceDefault mode networkCluster analysisSmall-world networkAlzheimer's diseaseCorrelationHuman brain

MeSH terms

AdultAgedAlzheimer DiseaseBrainBrain MappingComputer SimulationFemaleHumansMagnetic Resonance ImagingMaleMiddle AgedModels, NeurologicalNerve NetNeural Pathways

Funding

  • Alzheimer's Association
  • National Institutes of Health
Citations
1,159
FWCI
19.92
field-weighted impact
References
59
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.