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单通道记录的统计推断:具有有限时间分辨率的两态马尔可夫模型。

Statistical inference from single channel records: two-state Markov model with limited time resolution.

作者信息

Yeo G F, Milne R K, Edeson R O, Madsen B W

机构信息

Department of Mathematics, Odense University, Denmark.

出版信息

Proc R Soc Lond B Biol Sci. 1988 Oct 22;235(1278):63-94. doi: 10.1098/rspb.1988.0063.

Abstract

Though stochastic models are widely used to describe single ion channel behaviour, statistical inference based on them has received little consideration. This paper describes techniques of statistical inference, in particular likelihood methods, suitable for Markov models incorporating limited time resolution by means of a discrete detection limit. To simplify the analysis, attention is restricted to two-state models, although the methods have more general applicability. Non-uniqueness of the mean open-time and mean closed-time estimators obtained by moment methods based on single exponential approximations to the apparent open-time and apparent closed-time distributions has been reported. The present study clarifies and extends this previous work by proving that, for such approximations, the likelihood equations as well as the moment equations (usually) have multiple solutions. Such non-uniqueness corresponds to non-identifiability of the statistical model for the apparent quantities. By contrast, higher-order approximations yield theoretically identifiable models. Likelihood-based estimation procedures are developed for both single exponential and bi-exponential approximations. The methods and results are illustrated by numerical examples based on literature and simulated data, with consideration given to empirical distributions and model control, likelihood plots, and point estimation and confidence regions.

摘要

尽管随机模型被广泛用于描述单离子通道行为,但基于这些模型的统计推断却很少受到关注。本文描述了适用于通过离散检测限纳入有限时间分辨率的马尔可夫模型的统计推断技术,特别是似然方法。为了简化分析,尽管这些方法具有更广泛的适用性,但这里将注意力限制在双态模型上。基于对表观开放时间和表观关闭时间分布的单指数近似,通过矩方法获得的平均开放时间和平均关闭时间估计量的非唯一性已有报道。本研究通过证明对于此类近似,似然方程以及矩方程(通常)具有多个解,从而澄清并扩展了先前的工作。这种非唯一性对应于表观量统计模型的不可识别性。相比之下,高阶近似产生理论上可识别的模型。针对单指数和双指数近似开发了基于似然的估计程序。通过基于文献和模拟数据的数值示例来说明这些方法和结果,同时考虑了经验分布和模型控制、似然图以及点估计和置信区域。

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