Border-Collision Bifurcations of Cardiac Calcium Cycling
Date Issued
December 1, 2015
Author(s)
Advisor(s)
Xiaopeng Zhao
Additional Advisor(s)
Suzanne Lenhart
Charles Collins
Abstract
In this thesis, we study the nonlinear dynamics of calcium cycling within a cardiac cell. We develop piecewise smooth mapping models to describe intracellular calcium cycling in cardiac myocyte. Then, border-collision bifurcations that arise in these piecewise maps are investigated. These studies are carried out using both one-dimensional and two-dimensional models. Studies in this work lead to interesting insights on the stability of cardiac dynamics, suggesting possible mechanisms for cardiac alternans. Alternans is the precursor of sudden cardiac arrests, a leading cause of death in the United States.
Disciplines
Degree
Master of Science
Major
Mathematics
Embargo Date
January 1, 2011
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Border_Collision_Bifurcations_of_Cardiac_Calcium_Cycling___Jacob_Kahle.pdf
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Format
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