Literature DB >> 19211875

Interaction of cellular and network mechanisms in spatiotemporal pattern formation in neuronal networks.

Andrew Bogaard1, Jack Parent, Michal Zochowski, Victoria Booth.   

Abstract

Spatiotemporal patterning of neuronal activity is considered to be an important feature of cognitive processing in the brain as well as pathological brain states, such as seizures. Here, we investigate complex interactions between intrinsic properties of neurons and network structure in the generation of network spatiotemporal patterning in the context of seizure-like synchrony. We show that membrane excitability properties have differential effects on network activity patterning for different network topologies. We consider excitatory networks consisting of neurons with excitability properties varying between type I and type II that exhibit significantly different spike frequency responses to external current stimulation, especially at firing threshold. We find that networks with type II-like neurons show higher synchronization and bursting capacity across a range of network topologies than corresponding networks with type I-like neurons. These differences in activity patterning are persistent across different network sizes, connectivity strengths, magnitudes of random external input, and the addition of inhibitory interneurons to the network, making them highly likely to be relevant to brain function. Furthermore, we show that heterogeneous networks of mixed cell types show emergent dynamical patterns even for very low mixing ratios. Specifically, the addition of a small percentage of type II-like cells into a network of type I-like cells can markedly change the patterning of network activity. These findings suggest that cellular as well as network mechanisms can go hand in hand, leading to the generation of seizure-like discharges, suggesting that a single ictogenic mechanism alone may not be responsible for seizure generation.

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Year:  2009        PMID: 19211875      PMCID: PMC2717613          DOI: 10.1523/JNEUROSCI.5218-08.2009

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  37 in total

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7.  Transition from interictal to ictal activity in limbic networks in vitro.

Authors:  Volodymyr I Dzhala; Kevin J Staley
Journal:  J Neurosci       Date:  2003-08-27       Impact factor: 6.167

8.  Epilepsy in small-world networks.

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10.  Rapid temporal modulation of synchrony by competition in cortical interneuron networks.

Authors:  P H E Tiesinga; T J Sejnowski
Journal:  Neural Comput       Date:  2004-02       Impact factor: 2.026

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  28 in total

1.  Network recruitment to coherent oscillations in a hippocampal computer model.

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3.  Quantification of bursting and synchrony in cultured hippocampal neurons.

Authors:  Lawrence N Eisenman; Christine M Emnett; Jayaram Mohan; Charles F Zorumski; Steven Mennerick
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4.  Interplay between excitability type and distributions of neuronal connectivity determines neuronal network synchronization.

Authors:  Sima Mofakham; Christian G Fink; Victoria Booth; Michal R Zochowski
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5.  Seizure-induced alterations in fast-spiking basket cell GABA currents modulate frequency and coherence of gamma oscillation in network simulations.

Authors:  Archana Proddutur; Jiandong Yu; Fatima S Elgammal; Vijayalakshmi Santhakumar
Journal:  Chaos       Date:  2013-12       Impact factor: 3.642

6.  Network burst dynamics under heterogeneous cholinergic modulation of neural firing properties and heterogeneous synaptic connectivity.

Authors:  Scott Knudstrup; Michal Zochowski; Victoria Booth
Journal:  Eur J Neurosci       Date:  2016-04-06       Impact factor: 3.386

7.  Effects of adult-generated granule cells on coordinated network activity in the dentate gyrus.

Authors:  Clay O Lacefield; Vladimir Itskov; Thomas Reardon; René Hen; Joshua A Gordon
Journal:  Hippocampus       Date:  2010-09-29       Impact factor: 3.899

Review 8.  Epilepsy as a disorder of cortical network organization.

Authors:  Mark A Kramer; Sydney S Cash
Journal:  Neuroscientist       Date:  2012-01-10       Impact factor: 7.519

9.  Topological basis of epileptogenesis in a model of severe cortical trauma.

Authors:  Vladislav Volman; Terrence J Sejnowski; Maxim Bazhenov
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10.  Network and cellular mechanisms underlying heterogeneous excitatory/inhibitory balanced states.

Authors:  Jiaxing Wu; Sara J Aton; Victoria Booth; Michal Zochowski
Journal:  Eur J Neurosci       Date:  2020-01-20       Impact factor: 3.386

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