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Research Article | Open Access

Contribution of a Ca2+-activated K+ channel to neuronal bursting activities in the Chay model

Danqi Feng1Yu Chen1Quanbao Ji1,2( )
School of Mathematics and Physics, Guangxi Minzu University, Nanning 530006, China
Center for Applied Mathematics of Guangxi, Guangxi Minzu University, Nanning 530006, China
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Abstract

The central nervous system extensively expresses Ca2+-stimulated K+ channels, which serve to use Ca2+ to control their opening and closing. In this study, we explore the numerical computation of Hopf bifurcation in the Chay model based on the equilibrium point's stability and the center manifold theorem to illustrate the emergence of complicated neuronal bursting induced by variation of the conductance of the Ca2+-sensitive K+ channel. The results show that the formation and removal of various firing activities in this model are due to two subcritical Hopf bifurcations of equilibrium based on theoretical computation. Furthermore, the computational simulations are shown to support the validity of the conceptual approach. Consequently, the conclusion could be helpful to improve and deepen our understanding of the contribution of the Ca2+-sensitive K+ channel.

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Electronic Research Archive
Pages 7544-7555

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Cite this article:
Feng D, Chen Y, Ji Q. Contribution of a Ca2+-activated K+ channel to neuronal bursting activities in the Chay model. Electronic Research Archive, 2023, 31(12): 7544-7555. https://doi.org/10.3934/era.2023380

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Received: 27 September 2023
Revised: 21 November 2023
Accepted: 22 November 2023
Published: 15 December 2023
©2023 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0)