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MEMLET:一种使用最大似然估计进行数据拟合和模型比较的易于使用的工具。

MEMLET: An Easy-to-Use Tool for Data Fitting and Model Comparison Using Maximum-Likelihood Estimation.

作者信息

Woody Michael S, Lewis John H, Greenberg Michael J, Goldman Yale E, Ostap E Michael

机构信息

Pennsylvania Muscle Institute, University of Pennsylvania, Philadelphia, Pennsylvania.

Department of Physiology, University of Pennsylvania, Philadelphia, Pennsylvania.

出版信息

Biophys J. 2016 Jul 26;111(2):273-282. doi: 10.1016/j.bpj.2016.06.019.

Abstract

We present MEMLET (MATLAB-enabled maximum-likelihood estimation tool), a simple-to-use and powerful program for utilizing maximum-likelihood estimation (MLE) for parameter estimation from data produced by single-molecule and other biophysical experiments. The program is written in MATLAB and includes a graphical user interface, making it simple to integrate into the existing workflows of many users without requiring programming knowledge. We give a comparison of MLE and other fitting techniques (e.g., histograms and cumulative frequency distributions), showing how MLE often outperforms other fitting methods. The program includes a variety of features. 1) MEMLET fits probability density functions (PDFs) for many common distributions (exponential, multiexponential, Gaussian, etc.), as well as user-specified PDFs without the need for binning. 2) It can take into account experimental limits on the size of the shortest or longest detectable event (i.e., instrument "dead time") when fitting to PDFs. The proper modification of the PDFs occurs automatically in the program and greatly increases the accuracy of fitting the rates and relative amplitudes in multicomponent exponential fits. 3) MEMLET offers model testing (i.e., single-exponential versus double-exponential) using the log-likelihood ratio technique, which shows whether additional fitting parameters are statistically justifiable. 4) Global fitting can be used to fit data sets from multiple experiments to a common model. 5) Confidence intervals can be determined via bootstrapping utilizing parallel computation to increase performance. Easy-to-follow tutorials show how these features can be used. This program packages all of these techniques into a simple-to-use and well-documented interface to increase the accessibility of MLE fitting.

摘要

我们介绍了MEMLET(基于MATLAB的最大似然估计工具),这是一个简单易用且功能强大的程序,用于利用最大似然估计(MLE)从单分子和其他生物物理实验产生的数据中进行参数估计。该程序用MATLAB编写,并包含一个图形用户界面,无需编程知识就能轻松集成到许多用户的现有工作流程中。我们对MLE和其他拟合技术(例如直方图和累积频率分布)进行了比较,展示了MLE如何常常优于其他拟合方法。该程序具有多种功能。1)MEMLET可拟合许多常见分布(指数分布、多指数分布、高斯分布等)的概率密度函数(PDF),以及用户指定的PDF,无需进行分箱。2)在拟合PDF时,它可以考虑最短或最长可检测事件大小的实验限制(即仪器“死时间”)。程序会自动对PDF进行适当修改,大大提高了多组分指数拟合中速率和相对幅度拟合的准确性。3)MEMLET使用对数似然比技术进行模型测试(即单指数与双指数),显示额外的拟合参数在统计上是否合理。4)全局拟合可用于将来自多个实验的数据集拟合到一个共同模型。5)可以通过利用并行计算进行自展法来确定置信区间,以提高性能。易于理解的教程展示了如何使用这些功能。该程序将所有这些技术整合到一个简单易用且文档完善的界面中,以提高MLE拟合的可及性。

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