Glucose-induced period-doubling cascade in the electrical activity of pancreatic β-cells

被引:0
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作者
Bo Deng
机构
[1] Department of Mathematics and Statistics,
[2] University of Nebraska – Lincoln,undefined
[3] Lincoln,undefined
[4] NE 68588-0323,undefined
[5] USA. e-mail: bdeng@ode.unl.edu,undefined
[6] Department of Mathematics,undefined
[7] The National University of Singapore,undefined
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Key words: Bursting-spiking oscillations; Continuous spiking oscillations; Kneading sequence; Period-doubling cascade; Turning point; Junction point; Junction-fold point; Slow manifold; Stable and unstable foliations; Poincaré map; Asymptotic expansion;
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摘要
 In the presence of stimulatory concentrations of glucose, the membrane potential of pancreatic β-cells may experience a transition from periods of rapid spike-like oscillations alternating with a pseudo-steady state to spike-only oscillations. Insulin secretion from β-cells closely correlates the periods of spike-like oscillations. The purpose of this paper is to study the mathematical structure which underlines this transitional stage in a pancreatic β-cell model. It is demonstrated that the transition can be chaotic but becomes more and more regular with increase in glucose. In particular, the system undergoes a reversed period-doubling cascade leading to the spike-only oscillations as the glucose concentration crosses a threshold. The transition interval in glucose concentration is estimated to be extremely small in terms of the rate of change for the calcium dynamics in the β-cells. The methods are based on the theory of unimodal maps and the geometric and asymptotic theories of singular perturbations.
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页码:21 / 78
页数:57
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