Detection of slow-fast limit cycles in a model for electrical activity in the pancreatic β-cell
In this paper we consider a model for the phenomenon of bursting electrical activity in the pancreatic β-cell. Consisting of three coupled first-order nonlinear differential equations, the model describes the dynamics of the membrane potential, the activation parameter for the voltage-gated potassiu...
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th-mahidol.175182018-07-04T14:26:37Z Detection of slow-fast limit cycles in a model for electrical activity in the pancreatic β-cell Yongwimon Lenbury Kanchana Kumnungkit Boriboon Novaprateep Mahidol University Agricultural and Biological Sciences Mathematics In this paper we consider a model for the phenomenon of bursting electrical activity in the pancreatic β-cell. Consisting of three coupled first-order nonlinear differential equations, the model describes the dynamics of the membrane potential, the activation parameter for the voltage-gated potassium channel, and the intracellular calcium concentration. The bursting electrical activity depends on fast and slow processes with distinctly different time scales which, when taken to the limit of highly diversified dynamics, allow the application of the singular perturbation method. Explicit conditions are derived which differentiate various dynamic behaviours and identify, in particular, the limit cycles composed of alternate slow and fast transitions. Computer simulations are then presented to support our theoretical predictions. 2018-07-04T07:21:32Z 2018-07-04T07:21:32Z 1996-03-01 Article IMA Journal of Mathemathics Applied in Medicine and Biology. Vol.13, No.1 (1996), 1-21 02650746 2-s2.0-0030101874 https://repository.li.mahidol.ac.th/handle/123456789/17518 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=0030101874&origin=inward |
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Agricultural and Biological Sciences Mathematics Yongwimon Lenbury Kanchana Kumnungkit Boriboon Novaprateep Detection of slow-fast limit cycles in a model for electrical activity in the pancreatic β-cell |
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In this paper we consider a model for the phenomenon of bursting electrical activity in the pancreatic β-cell. Consisting of three coupled first-order nonlinear differential equations, the model describes the dynamics of the membrane potential, the activation parameter for the voltage-gated potassium channel, and the intracellular calcium concentration. The bursting electrical activity depends on fast and slow processes with distinctly different time scales which, when taken to the limit of highly diversified dynamics, allow the application of the singular perturbation method. Explicit conditions are derived which differentiate various dynamic behaviours and identify, in particular, the limit cycles composed of alternate slow and fast transitions. Computer simulations are then presented to support our theoretical predictions. |
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Mahidol University |
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Mahidol University Yongwimon Lenbury Kanchana Kumnungkit Boriboon Novaprateep |
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Article |
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Yongwimon Lenbury Kanchana Kumnungkit Boriboon Novaprateep |
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Yongwimon Lenbury |
title |
Detection of slow-fast limit cycles in a model for electrical activity in the pancreatic β-cell |
title_short |
Detection of slow-fast limit cycles in a model for electrical activity in the pancreatic β-cell |
title_full |
Detection of slow-fast limit cycles in a model for electrical activity in the pancreatic β-cell |
title_fullStr |
Detection of slow-fast limit cycles in a model for electrical activity in the pancreatic β-cell |
title_full_unstemmed |
Detection of slow-fast limit cycles in a model for electrical activity in the pancreatic β-cell |
title_sort |
detection of slow-fast limit cycles in a model for electrical activity in the pancreatic β-cell |
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2018 |
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https://repository.li.mahidol.ac.th/handle/123456789/17518 |
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1763496585983950848 |