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首页> 外文期刊>Journal of Mathematical Biology >Invariant manifold reductions for Markovian ion channel dynamics
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Invariant manifold reductions for Markovian ion channel dynamics

机译:马尔可夫离子通道动力学的不变流形约简

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We show that many Markov models of ion channel kinetics have globally attracting stable invariant manifolds, even when the Markov process is time dependent. The primary implication of this is that, since the dimension of the invariant manifold is often substantially smaller than the full master equation system, simulations of ion channel kinetics can be substantially simplified, with no approximation. We show that this applies to certain models of potassium channels, sodium channels, ryanodine receptors and IP3 receptors. We also use this to show that the original Hodgkin-Huxley formulations of potassium channel conductance and sodium channel conductance are the exact solutions of full Markov models for these channels.
机译:我们表明,即使马尔可夫过程是时间依赖性的,许多离子通道动力学的马尔可夫模型已经吸引了全球各地的稳定不变流形。这样做的主要含义是,由于不变歧管的尺寸通常比完整的主方程组小得多,因此离子通道动力学的模拟可以大大简化而无需近似。我们证明这适用于钾通道,钠通道,ryanodine受体和IP3受体的某些模型。我们还使用它来表明钾通道电导和钠通道电导的原始霍奇金-赫克斯利公式是这些通道的完整马尔可夫模型的精确解。

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