Literature DB >> 24094111

A predictive network model of cerebral cortical connectivity based on a distance rule.

Mária Ercsey-Ravasz1, Nikola T Markov, Camille Lamy, David C Van Essen, Kenneth Knoblauch, Zoltán Toroczkai, Henry Kennedy.   

Abstract

Recent advances in neuroscience have engendered interest in large-scale brain networks. Using a consistent database of cortico-cortical connectivity, generated from hemisphere-wide, retrograde tracing experiments in the macaque, we analyzed interareal weights and distances to reveal an important organizational principle of brain connectivity. Using appropriate graph theoretical measures, we show that although very dense (66%), the interareal network has strong structural specificity. Connection weights exhibit a heavy-tailed lognormal distribution spanning five orders of magnitude and conform to a distance rule reflecting exponential decay with interareal separation. A single-parameter random graph model based on this rule predicts numerous features of the cortical network: (1) the existence of a network core and the distribution of cliques, (2) global and local binary properties, (3) global and local weight-based communication efficiencies modeled as network conductance, and (4) overall wire-length minimization. These findings underscore the importance of distance and weight-based heterogeneity in cortical architecture and processing.
Copyright © 2013 Elsevier Inc. All rights reserved.

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Year:  2013        PMID: 24094111      PMCID: PMC3954498          DOI: 10.1016/j.neuron.2013.07.036

Source DB:  PubMed          Journal:  Neuron        ISSN: 0896-6273            Impact factor:   17.173


  69 in total

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10.  Weight consistency specifies regularities of macaque cortical networks.

Authors:  N T Markov; P Misery; A Falchier; C Lamy; J Vezoli; R Quilodran; M A Gariel; P Giroud; M Ercsey-Ravasz; L J Pilaz; C Huissoud; P Barone; C Dehay; Z Toroczkai; D C Van Essen; H Kennedy; K Knoblauch
Journal:  Cereb Cortex       Date:  2010-11-02       Impact factor: 5.357

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  128 in total

1.  Partial Correlation-Based Retinotopically Organized Resting-State Functional Connectivity Within and Between Areas of the Visual Cortex Reflects More Than Cortical Distance.

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Review 3.  Cortical high-density counterstream architectures.

Authors:  Kenneth Knoblauch; Zoltán Toroczkai; Henry Kennedy; Nikola T Markov; Mária Ercsey-Ravasz; David C Van Essen
Journal:  Science       Date:  2013-11-01       Impact factor: 47.728

Review 4.  The log-dynamic brain: how skewed distributions affect network operations.

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7.  Cortical network models of impulse firing in the resting and active states predict cortical energetics.

Authors:  Maxwell R Bennett; Les Farnell; William G Gibson; Jim Lagopoulos
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8.  Association of aerobic glycolysis with the structural connectome reveals a benefit-risk balancing mechanism in the human brain.

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9.  A goal-driven modular neural network predicts parietofrontal neural dynamics during grasping.

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10.  Space-independent community and hub structure of functional brain networks.

Authors:  Farnaz Zamani Esfahlani; Maxwell A Bertolero; Danielle S Bassett; Richard F Betzel
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