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首页> 外文期刊>Journal of Mathematical Biology >Erratum to: Mathematical properties of pump-leak models of cell volume control and electrolyte balance
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Erratum to: Mathematical properties of pump-leak models of cell volume control and electrolyte balance

机译:勘误至:电池体积控制和电解质平衡的泵漏模型的数学性质

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摘要

Homeostatic control of cell volume and intracellular electrolyte content is a fundamental problem in physiology and is central to the functioning of epithelial systems. These physiological processes are modeled using pump-leak models, a system of differential algebraic equations that describes the balance of ions and water flowing across the cell membrane. Despite their widespread use, very little is known about their mathematical properties. Here, we establish analytical results on the existence and stability of steady states for a general class of pump-leak models. We treat two cases. When the ion channel currents have a linear current-voltage relationship, we show that there is at most one steady state, and that the steady state is globally asymptotically stable. If there are no steady states, the cell volume tends to infinity with time. When minimal assumptions are placed on the properties of ion channel currents, we show that there is an asymptotically stable steady state so long as the pump current is not too large. The key analytical tool is a free energy relation satisfied by a general class of pump-leak models, which can be used as a Lyapunov function to study stability.
机译:细胞体积和细胞内电解质含量的稳态控制是生理学中的基本问题,并且对上皮系统的功能至关重要。这些生理过程是使用泵泄漏模型建模的,该模型是微分代数方程组,用于描述离子和流过细胞膜的水的平衡。尽管它们被广泛使用,但对其数学性质知之甚少。在这里,我们建立关于泵泄漏模型的一般类别的稳态存在和稳定性的分析结果。我们治疗两种情况。当离子通道电流具有线性电流-电压关系时,我们表明最多存在一个稳态,并且该稳态是全局渐近稳定的。如果没有稳态,则细胞体积会随着时间趋于无穷大。当对离子通道电流的特性进行最小假设时,我们表明只要泵浦电流不是太大,就存在渐近稳定的状态。关键的分析工具是由一类通用的泵泄漏模型满足的自由能关系,该模型可以用作研究稳定性的李雅普诺夫函数。

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