Literature DB >> 27830650

Relationships between cortical myeloarchitecture and electrophysiological networks.

Benjamin A E Hunt1, Prejaas K Tewarie1, Olivier E Mougin1, Nicolas Geades1, Derek K Jones2, Krish D Singh2, Peter G Morris1, Penny A Gowland1, Matthew J Brookes3.   

Abstract

The human brain relies upon the dynamic formation and dissolution of a hierarchy of functional networks to support ongoing cognition. However, how functional connectivities underlying such networks are supported by cortical microstructure remains poorly understood. Recent animal work has demonstrated that electrical activity promotes myelination. Inspired by this, we test a hypothesis that gray-matter myelin is related to electrophysiological connectivity. Using ultra-high field MRI and the principle of structural covariance, we derive a structural network showing how myelin density differs across cortical regions and how separate regions can exhibit similar myeloarchitecture. Building upon recent evidence that neural oscillations mediate connectivity, we use magnetoencephalography to elucidate networks that represent the major electrophysiological pathways of communication in the brain. Finally, we show that a significant relationship exists between our functional and structural networks; this relationship differs as a function of neural oscillatory frequency and becomes stronger when integrating oscillations over frequency bands. Our study sheds light on the way in which cortical microstructure supports functional networks. Further, it paves the way for future investigations of the gray-matter structure/function relationship and its breakdown in pathology.

Entities:  

Keywords:  MRI; functional connectivity; magnetoencephalography; myelination; network

Mesh:

Year:  2016        PMID: 27830650      PMCID: PMC5127325          DOI: 10.1073/pnas.1608587113

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  56 in total

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  30 in total

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Authors:  Xiaojie Wang; Colin Studholme; Peta L Grigsby; Antonio E Frias; Verginia C Cuzon Carlson; Christopher D Kroenke
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3.  Depth-dependent intracortical myelin organization in the living human brain determined by in vivo ultra-high field magnetic resonance imaging.

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7.  Networks of myelin covariance.

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8.  Consistency of magnetoencephalographic functional connectivity and network reconstruction using a template versus native MRI for co-registration.

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9.  Functional and effective whole brain connectivity using magnetoencephalography to identify monozygotic twin pairs.

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