Stability analysis of the Hindmarsh-Rose neuron under electromagnetic induction

Fuente: arXiv
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Autori principali: Goulefack, L. Messee, Chamgoue, A. Cheage, Anteneodo, C., Yamapi, R.
Natura: Preprint
Pubblicazione: 2021
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author Goulefack, L. Messee
Chamgoue, A. Cheage
Anteneodo, C.
Yamapi, R.
author_facet Goulefack, L. Messee
Chamgoue, A. Cheage
Anteneodo, C.
Yamapi, R.
contents We consider the Hindmarsh-Rose neuron model modified by taking into account the effect of electromagnetic induction on membrane potential. We study the impact of the magnetic flux on the neuron dynamics, through the analysis of the stability of fixed points. Increasing magnetic flux reduces the number of equilibrium points and favors their stability. Therefore, electromagnetic induction tends to regularize chaotic regimes and to affect regular and quasi-regular ones by reducing the number of spikes or even destroying the oscillations.
format Preprint
id arxiv_https___arxiv_org_abs_2112_09987
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Stability analysis of the Hindmarsh-Rose neuron under electromagnetic induction
Goulefack, L. Messee
Chamgoue, A. Cheage
Anteneodo, C.
Yamapi, R.
Statistical Mechanics
Chaotic Dynamics
Pattern Formation and Solitons
We consider the Hindmarsh-Rose neuron model modified by taking into account the effect of electromagnetic induction on membrane potential. We study the impact of the magnetic flux on the neuron dynamics, through the analysis of the stability of fixed points. Increasing magnetic flux reduces the number of equilibrium points and favors their stability. Therefore, electromagnetic induction tends to regularize chaotic regimes and to affect regular and quasi-regular ones by reducing the number of spikes or even destroying the oscillations.
title Stability analysis of the Hindmarsh-Rose neuron under electromagnetic induction
topic Statistical Mechanics
Chaotic Dynamics
Pattern Formation and Solitons
url https://arxiv.org/abs/2112.09987