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Deriving Behaviour of Hodgkin Huxley model with fever dynamics: A computational study

Year 2017, Volume: 2 Issue: 2, 47 - 54, 01.06.2017

Abstract

A single neuron can be modeled by the set of differential equations. Hodgkin-Huxley (HH) model, the one of the most
famous neuron model, can be considered as a dynamical system with four independent variables. Here we studied to reduce the number of differential equation required for conductance based HH model under strong inhibitory noise. Exponential Integrate and Fire (EIF) model, one independent variable, is used as a reduced model of HH model by using current-voltage (I-V) curve of the original model.
The required reduction parameters are determined from this curve. The behaviour of HH model and its reduced EIF (rEIF) model are
in good agreement in sub-threshold level. Above-threshold behaviour of reduced EIF model and original model compared in terms of
threshold voltage under strong inhibitory noise. Our numerical simulations clearly show that sub-threshold behaviour of HH model
perfectly reduced to rEIF model

Year 2017, Volume: 2 Issue: 2, 47 - 54, 01.06.2017

Abstract

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Details

Other ID JA64VS46HG
Journal Section Research Article
Authors

Hasan Eskalen This is me

Sukru Ozgan This is me

Publication Date June 1, 2017
Published in Issue Year 2017 Volume: 2 Issue: 2

Cite

APA Eskalen, H., & Ozgan, S. (2017). Deriving Behaviour of Hodgkin Huxley model with fever dynamics: A computational study. Communication in Mathematical Modeling and Applications, 2(2), 47-54.
AMA Eskalen H, Ozgan S. Deriving Behaviour of Hodgkin Huxley model with fever dynamics: A computational study. CMMA. June 2017;2(2):47-54.
Chicago Eskalen, Hasan, and Sukru Ozgan. “Deriving Behaviour of Hodgkin Huxley Model With Fever Dynamics: A Computational Study”. Communication in Mathematical Modeling and Applications 2, no. 2 (June 2017): 47-54.
EndNote Eskalen H, Ozgan S (June 1, 2017) Deriving Behaviour of Hodgkin Huxley model with fever dynamics: A computational study. Communication in Mathematical Modeling and Applications 2 2 47–54.
IEEE H. Eskalen and S. Ozgan, “Deriving Behaviour of Hodgkin Huxley model with fever dynamics: A computational study”, CMMA, vol. 2, no. 2, pp. 47–54, 2017.
ISNAD Eskalen, Hasan - Ozgan, Sukru. “Deriving Behaviour of Hodgkin Huxley Model With Fever Dynamics: A Computational Study”. Communication in Mathematical Modeling and Applications 2/2 (June 2017), 47-54.
JAMA Eskalen H, Ozgan S. Deriving Behaviour of Hodgkin Huxley model with fever dynamics: A computational study. CMMA. 2017;2:47–54.
MLA Eskalen, Hasan and Sukru Ozgan. “Deriving Behaviour of Hodgkin Huxley Model With Fever Dynamics: A Computational Study”. Communication in Mathematical Modeling and Applications, vol. 2, no. 2, 2017, pp. 47-54.
Vancouver Eskalen H, Ozgan S. Deriving Behaviour of Hodgkin Huxley model with fever dynamics: A computational study. CMMA. 2017;2(2):47-54.