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首页> 外文期刊>Analytical chemistry >Multiway partial least-squares coupled to residual trilinearization: A genuine multidimensional tool for the study of third-order data. Simultaneous analysis of procaine and its metabolite p-aminobenzoic acid in equine serum
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Multiway partial least-squares coupled to residual trilinearization: A genuine multidimensional tool for the study of third-order data. Simultaneous analysis of procaine and its metabolite p-aminobenzoic acid in equine serum

机译:与残差三线性化耦合的多方偏最小二乘:研究三阶数据的真正多维工具。马血清中普鲁卡因及其代谢产物对氨基苯甲酸的同时分析

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摘要

A new third-order multivariate calibration approach, based on the combination of multiway-partial least-squares with a separate procedure called residual trilinearization (N-PLS/RTL), is presented and applied to multicomponent analysis using third-order data. The proposed chemometric algorithm is able to predict analyte concentrations in the presence of unexpected sample components, which require strict adherence to the second-order advantage. Results for the determination of procaine and its metabolite p-aminobenzoic acid in equine serum are discussed, based on kinetic fluorescence excitation-emission four-way measurements and application of the newly developed multiway methodology. Since the analytes are also the reagent and product of the hydrolysis reaction followed by fast-scanning fluorescence spectroscopy, the classical approach based on parallel factor analysis is challenged by strong linear dependencies and multilinearity losses. In comparison, N-PLS/RTL appears an appealing genuine multiway alternative that avoids the latter complications, yielding analytical results that are statistically comparable to those rendered by related unfolded algorithms, which are also able to process four-way data. Prediction was made on validation samples with a qualitative composition similar to the calibration set and also on test samples containing unexpected equine serum components.
机译:提出了一种新的三阶多元校准方法,该方法基于多路偏最小二乘法与称为残差三线性化(N-PLS / RTL)的单独程序的组合,并应用于使用三阶数据的多组分分析。所提出的化学计量学算法能够在意想不到的样品成分存在的情况下预测分析物浓度,这需要严格遵守二阶优势。基于动力学荧光激发-发射四向测量和新开发的多向方法的应用,讨论了马血清中普鲁卡因及其代谢物对氨基苯甲酸的测定结果。由于分析物也是水解反应的试剂和产物,随后是快速扫描荧光光谱法,因此基于并行因子分析的经典方法面临着强大的线性依赖性和多线性损失的挑战。相比之下,N-PLS / RTL似乎是一种吸引人的真正多路替代方案,可避免后一种并发症,产生的分析结果在统计学上可与相关的展开算法提供的分析结果相比较,后者也能够处理四向数据。对具有与校准组相似的定性成分的验证样品以及含有意外马血清成分的测试样品进行预测。

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