Ponzoni L, Celardo G L, Borgonovi F, Kaplan L, Kargol A
Dipartimento di Matematica e Fisica, Università Cattolica, via Musei 41, 25121 Brescia, Italy.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 May;87(5):052137. doi: 10.1103/PhysRevE.87.052137. Epub 2013 May 28.
We investigate nonequilibrium stationary distributions induced by stochastic dichotomous noise in double-well and multiwell models of ion channel gating kinetics. The channel kinetics is analyzed using both overdamped Langevin equations and master equations. With the Langevin equation approach we show a nontrivial focusing effect due to the external stochastic noise, namely, the concentration of the probability distribution in one of the two wells of a double-well system or in one or more of the wells of the multiwell model. In the multiwell system, focusing in the outer wells is shown to be achievable under physiological conditions, while focusing in the central wells has proved possible so far only at very low temperatures. We also discuss the strength of the focusing effect and obtain the conditions necessary for maximal focusing to appear. These conditions cannot be predicted by a simple master equation approach.
我们研究了离子通道门控动力学的双阱和多阱模型中由随机二分噪声诱导的非平衡稳态分布。使用过阻尼朗之万方程和主方程对通道动力学进行了分析。通过朗之万方程方法,我们展示了由于外部随机噪声导致的非平凡聚焦效应,即在双阱系统的两个阱之一中或多阱模型的一个或多个阱中概率分布的集中。在多阱系统中,已表明在生理条件下可实现外阱中的聚焦,而到目前为止仅在非常低的温度下才证明中心阱中的聚焦是可能的。我们还讨论了聚焦效应的强度,并获得了出现最大聚焦所需的条件。这些条件无法通过简单的主方程方法预测。