Literature DB >> 20598763

Characterization of anatomical and functional connectivity in the brain: a complex networks perspective.

C J Stam1.   

Abstract

A central question in modern neuroscience is how anatomical and functional connections between brain areas are organized to allow optimal information processing. In particular, both segregation and integration of information have to be dealt with in a single architecture of brain networks. There is strong evidence that synchronization of neural activity, both locally and between distant regions is a crucial code for functional interactions. However, a powerful theoretical framework to describe the structural and functional topology of system-wide brain networks has only become available with the discovery of 'small-world' and 'scale-free' networks in 1998 and 1999. There is now strong evidence that brain networks, ranging from simple nets of interconnected neurons up to macroscopic networks of brain areas display the typical features of complex systems: high clustering, short path lengths (both typical of 'small-world' networks), skewed degree distributions, presence of hubs, assortative mixing and the presence of modules. This has been demonstrated for anatomical and functional networks using neuroanatomical techniques, EEG, MEG and structural and functional MRI, in organisms ranging from C. elegans to man. In addition, network topology has been shown to be highly heritable, and very predictive of cognitive functioning. A short path length, which implies that from any area in the brain any other area can be reached in a small number of steps, is strongly correlated with IQ. Computational models are now beginning to reveal how the complex structure of adult brain networks could arise during development. Copyright 2010 Elsevier B.V. All rights reserved.

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Year:  2010        PMID: 20598763     DOI: 10.1016/j.ijpsycho.2010.06.024

Source DB:  PubMed          Journal:  Int J Psychophysiol        ISSN: 0167-8760            Impact factor:   2.997


  39 in total

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5.  The lesioned brain: still a small-world?

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6.  Disrupted subject-specific gray matter network properties and cognitive dysfunction in type 1 diabetes patients with and without proliferative retinopathy.

Authors:  Eelco van Duinkerken; Richard G Ijzerman; Martin Klein; Annette C Moll; Frank J Snoek; Philip Scheltens; Petra J W Pouwels; Frederik Barkhof; Michaela Diamant; Betty M Tijms
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7.  Application of Graph Theory to Assess Static and Dynamic Brain Connectivity: Approaches for Building Brain Graphs.

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8.  Activity dependent degeneration explains hub vulnerability in Alzheimer's disease.

Authors:  Willem de Haan; Katherine Mott; Elisabeth C W van Straaten; Philip Scheltens; Cornelis J Stam
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9.  Connectivity-based structural and functional parcellation of the human cortex using diffusion imaging and tractography.

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Review 10.  Brain connectivity analysis: a short survey.

Authors:  E W Lang; A M Tomé; I R Keck; J M Górriz-Sáez; C G Puntonet
Journal:  Comput Intell Neurosci       Date:  2012-10-11
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