Temperature effects on neuronal synchronization in seizures

Author:

Follmann Rosangela1ORCID,Jaswal Twinkle1ORCID,Jacob George1,de Oliveira Jonas Ferreira2ORCID,Herbert Carter B.3ORCID,Macau Elbert E. N.4ORCID,Rosa Epaminondas35ORCID

Affiliation:

1. School of Information Technology, Illinois State University 1 , Normal, Illinois 61790, USA

2. National Institute for Space Research (INPE) 2 , São José dos Campos, São Paulo, 12227-010, Brazil

3. Department of Physics, Illinois State University 3 , Normal, Illinois 61790, USA

4. Federal University of São Paulo (UNIFESP) 4 , São José dos Campos, São Paulo, 12247-014 Brazil

5. School of Biological Sciences, Illinois State University 5 , Normal, Illinois 61790, USA

Abstract

We present a computational model of networked neurons developed to study the effect of temperature on neuronal synchronization in the brain in association with seizures. The network consists of a set of chaotic bursting neurons surrounding a core tonic neuron in a square lattice with periodic boundary conditions. Each neuron is reciprocally coupled to its four nearest neighbors via temperature dependent gap junctions. Incorporating temperature in the gap junctions makes the coupling stronger when temperature rises, resulting in higher likelihood for synchrony in the network. Raising the temperature eventually makes the network elicit waves of synchronization in circular ripples that propagate from the center outwardly. We suggest this process as a possible underlying mechanism for seizures induced by elevated brain temperatures.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Illinois State University

Publisher

AIP Publishing

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