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  4. Cliques of Neurons Bound into Cavities Provide a Missing Link between Structure and Function
 
research article

Cliques of Neurons Bound into Cavities Provide a Missing Link between Structure and Function

Reimann, Michael W.
•
Nolte, Max  
•
Scolamiero, Martina  
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2017
Frontiers In Computational Neuroscience

The lack of a formal link between neural network structure and its emergent function has hampered our understanding of how the brain processes information. We have now come closer to describing such a link by taking the direction of synaptic transmission into account, constructing graphs of a network that reflect the direction of information flow, and analyzing these directed graphs using algebraic topology. Applying this approach to a local network of neurons in the neocortex revealed a remarkably intricate and previously unseen topology of synaptic connectivity. The synaptic network contains an abundance of cliques of neurons bound into cavities that guide the emergence of correlated activity. In response to stimuli, correlated activity binds synaptically connected neurons into functional cliques and cavities that evolve in a stereotypical sequence toward peak complexity. We propose that the brain processes stimuli by forming increasingly complex functional cliques and cavities.

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Type
research article
DOI
10.3389/fncom.2017.00048
Web of Science ID

WOS:000403371200001

Author(s)
Reimann, Michael W.
Nolte, Max  
Scolamiero, Martina  
Turner, Katharine
Perin, Rodrigo  
Chindemi, Giuseppe  
Dlotko, Pawel
Levi, Ran
Hess, Kathryn  
Markram, Henry  
Date Issued

2017

Publisher

Frontiers Media Sa

Published in
Frontiers In Computational Neuroscience
Volume

11

Start page

48

Subjects

connectomics

•

topology

•

directed networks

•

structure-function

•

correlations

•

Betti numbers

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
BBP-CORE  
LNMC  
UPHESS  
Available on Infoscience
July 10, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/138979
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