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多重叠色谱信号峰检测与反卷积自动程序 第二部分:峰模型与反卷积算法

Automatic program for peak detection and deconvolution of multi-overlapped chromatographic signals part II: peak model and deconvolution algorithms.

作者信息

Vivó-Truyols G, Torres-Lapasió J R, van Nederkassel A M, Vander Heyden Y, Massart D L

机构信息

Department of Analytical Chemistry, Universitat de València, c/Dr. Moliner 50, 46100 Burjassot, Spain.

出版信息

J Chromatogr A. 2005 Nov 25;1096(1-2):146-55. doi: 10.1016/j.chroma.2005.03.072. Epub 2005 Apr 13.

DOI:10.1016/j.chroma.2005.03.072
PMID:16301077
Abstract

Several interlinked algorithms for peak deconvolution by non-linear regression are presented. These procedures, together with the peak detection methods outlined in Part I, have allowed the implementation of an automatic method able to process multi-overlapped signals, requiring little user interaction. A criterion based on the evaluation of the multivariate selectivity of the chromatographic signal is used to auto-select the most efficient deconvolution procedure for each chromatographic situation. In this way, non-optimal local solutions are avoided in cases of high overlap, and short computation times are obtained in situations of high resolution. A new algorithm, fitting both the original signal and the second derivatives is proved to avoid local optima in intermediate coelution situations. This allows achieving the global optimum without the need of background knowledge by the user. A previously reported peak model, a Gaussian with a polynomial standard deviation whose complexity can be modulated to enhance the fitting quality, was applied. However, the original formulation was modified to account baseline outside the peak region. Also, the optimal model complexity was auto-selected via error propagation theory. The method is able to process simultaneously several related chromatograms. The software was tested with both simulated and experimental chromatograms obtained with monolithic silica columns.

摘要

本文提出了几种用于非线性回归峰去卷积的相互关联的算法。这些程序,连同第一部分中概述的峰检测方法,实现了一种自动方法,该方法能够处理多重重叠信号,几乎不需要用户交互。基于色谱信号多变量选择性评估的标准用于为每种色谱情况自动选择最有效的去卷积程序。这样,在高重叠情况下避免了非最优局部解,在高分辨率情况下获得了较短的计算时间。一种新的算法,同时拟合原始信号和二阶导数,被证明可以避免中间共洗脱情况下的局部最优。这使得无需用户具备背景知识就能实现全局最优。应用了一个先前报道的峰模型,即具有多项式标准差的高斯模型,其复杂度可以调节以提高拟合质量。然而,对原始公式进行了修改以考虑峰区域之外的基线。此外,通过误差传播理论自动选择最优模型复杂度。该方法能够同时处理几个相关的色谱图。使用整体硅胶柱获得的模拟和实验色谱图对该软件进行了测试。

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