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

机译:葡萄糖诱导的胰腺β细胞电活动的倍增级联反应。

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In the presence of stimulatory concentrations of glucose, the membrane potential of pancreatic beta-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 beta-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 beta-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 beta-cells. The methods are based on the theory of unimodal maps and the geometric and asymptotic theories of singular perturbations.
机译:在存在刺激性葡萄糖浓度的情况下,胰腺β细胞的膜电位可能会经历从快速峰状振荡与伪稳态交替的阶段过渡到仅峰状振荡。 β细胞分泌的胰岛素与峰状振荡的周期密切相关。本文的目的是研究在胰腺β细胞模型中强调此过渡阶段的数学结构。已经证明过渡可以是混乱的,但是随着葡萄糖的增加而变得越来越规则。特别地,当葡萄糖浓度超过阈值时,系统经历反向的周期加倍级联,导致仅尖峰振荡。就β细胞中钙动力学的变化速率而言,葡萄糖浓度的过渡区间估计极小。这些方法基于单峰图的理论以及奇异摄动的几何和渐近理论。

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