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Mapping the Structural Core of Human Cerebral Cortex

PLoS Biology · 2008 · Vol. 6(7) · pp. e159–e159
Patric HagmannLeila CammounXavier GigandetReto MeuliChristopher J. HoneyVan J. WedeenOlaf Sporns

Abstract

Structurally segregated and functionally specialized regions of the human cerebral cortex are interconnected by a dense network of cortico-cortical axonal pathways. By using diffusion spectrum imaging, we noninvasively mapped these pathways within and across cortical hemispheres in individual human participants. An analysis of the resulting large-scale structural brain networks reveals a structural core within posterior medial and parietal cerebral cortex, as well as several distinct temporal and frontal modules. Brain regions within the structural core share high degree, strength, and betweenness centrality, and they constitute connector hubs that link all major structural modules. The structural core contains brain regions that form the posterior components of the human default network. Looking both within and outside of core regions, we observed a substantial correspondence between structural connectivity and resting-state functional connectivity measured in the same participants. The spatial and topological centrality of the core within cortex suggests an important role in functional integration.

Functional Brain Connectivity StudiesAdvanced Neuroimaging Techniques and ApplicationsNeural dynamics and brain functionNeuroscienceBetweenness centralityBiologyHuman brainCortex (anatomy)Cerebral cortexFunctional specializationCore (optical fiber)CentralityAnatomy

MeSH terms

AdultBrain MappingCerebral CortexHumansMaleModels, NeurologicalNerve NetImaging, Three-DimensionalDiffusion Magnetic Resonance Imaging

Funding

  • James S. McDonnell Foundation
  • École Polytechnique Fédérale de Lausanne
  • Université de Lausanne
  • Centre d'Imagerie BioMédicale
  • Centre Hospitalier Universitaire Vaudois
  • National Institutes of Health
Citations
4,335
FWCI
77.59
field-weighted impact
References
57
Percentile
100%
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References
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