>
Fa   |   Ar   |   En
   Connectomic insights into topologically centralized network edges and relevant motifs in the human brain  
   
نویسنده xia m. ,lin q. ,bi y. ,he y.
منبع frontiers in human neuroscience - 2016 - دوره : 10 - شماره : APR2016 - صفحه:1 -16
چکیده    White matter (wm) tracts serve as important material substrates for information transfer across brain regions. however,the topological roles of wm tracts in global brain communications and their underlying microstructural basis remain poorly understood. here,we employed diffusion magnetic resonance imaging and graph-theoretical approaches to identify the pivotal wm connections in human whole-brain networks and further investigated their wiring substrates (including wm microstructural organization and physical consumption) and topological contributions to the brain’s network backbone. we found that the pivotal wm connections with highly topological-edge centrality were primarily distributed in several long-range cortico-cortical connections (including the corpus callosum,cingulum and inferior fronto-occipital fasciculus) and some projection tracts linking subcortical regions. these pivotal wm connections exhibited high levels of microstructural organization indicated by diffusion measures (the fractional anisotropy,the mean diffusivity and the axial diffusivity) and greater physical consumption indicated by streamline lengths,and contributed significantly to the brain’s hubs and the rich-club structure. network motif analysis further revealed their heavy participations in the organization of communication blocks,especially in routes involving inter-hemispheric heterotopic and extremely remote intra-hemispheric systems. computational simulation models indicated the sharp decrease of global network integrity when attacking these highly centralized edges. together,our results demonstrated high building-cost consumption and substantial communication capacity contributions for pivotal wm connections,which deepens our understanding of the topological mechanisms that govern the organization of human connectomes. © 2016 xia,lin,bi and he.
کلیدواژه Connectomics; Diffusion mri; Hub; Microstructure; Motif; Rich-club
آدرس state key laboratory of cognitive neuroscience and learning,idg/mcgovern institute for brain research,beijing normal university,beijing, China, state key laboratory of cognitive neuroscience and learning,idg/mcgovern institute for brain research,beijing normal university,beijing, China, state key laboratory of cognitive neuroscience and learning,idg/mcgovern institute for brain research,beijing normal university,beijing, China, state key laboratory of cognitive neuroscience and learning,idg/mcgovern institute for brain research,beijing normal university,beijing, China
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved