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首页> 外文期刊>Chemometrics and Intelligent Laboratory Systems >Multivariate curve resolution alternating least square (MCR-ALS) analysis on total synchronous fluorescence spectroscopy (TSFS) data sets: Comparing certain ways of arranging TSFS-based three-way array
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Multivariate curve resolution alternating least square (MCR-ALS) analysis on total synchronous fluorescence spectroscopy (TSFS) data sets: Comparing certain ways of arranging TSFS-based three-way array

机译:总同步荧光光谱(TSFS)数据集的多变量曲线分辨率交替最小二乘(MCR-ALS)分析:比较安排基于TSFS的三向阵列的某些方法

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Total synchronous fluorescence spectroscopy (TSFS)-based three-way array sample x excitation wavelength x Delta lambda has inherently complex data structure. Multivariate curve resolution alternating least square (MCR-ALS) analysis is a soft mathematical modelling technique that can be used to retrieve pure spectral and contribution profile of the fluorophores of a multifluorophoric mixture provided it is applied to bilinear data sets. In the present work, possibilities of generating bilinear two-way arrays by (i) unfolding and (ii) augmenting the TSFS-based three-way array were studied. Bilinear characteristics of the obtained two-way arrays were tested by subjecting them to MCR-ALS analysis. It was found that lack of analytical-mathematical relationship between spectral profile along the excitation wavelength mode and the offset mode do not allow the application of MCR-ALS analysis on augmented TSFS data set. Moreover, the augmentation procedure and chemical-mathematical rank of the subsequently obtained data sets were found to be 'not independent' of each other. Two-way array sample x (excitation wavelength x Delta lambda) obtained by unfolding TSFS-based three-way array along the sample mode was found to have symmetrical structure, i.e., both sample mode and spectral mode have equal mathematical and chemical rank making them highly attuned to MCR-ALS analysis. (C) 2015 Elsevier B.V. All rights reserved.
机译:基于全同步荧光光谱(TSFS)的三向阵列样品x激发波长xΔλ具有固有的复杂数据结构。多元曲线分辨率交替最小二乘法(MCR-ALS)分析是一种软数学建模技术,可以将其应用于双线性数据集,从而检索多荧光团混合物的荧光团的纯光谱和贡献曲线。在当前工作中,研究了通过(i)展开和(ii)扩展基于TSFS的三向阵列生成双线性两向阵列的可能性。通过对它们进行MCR-ALS分析来测试获得的双向阵列的双线性特征。发现沿激发波长模式和偏移模式的光谱轮廓之间缺乏分析数学关系,因此无法在增强的TSFS数据集上应用MCR-ALS分析。此外,发现随后获得的数据集的扩充程序和化学数学等级彼此不“独立”。发现通过沿采样模式展开基于TSFS的三向阵列而获得的两向阵列样本x(激发波长xΔλ)具有对称结构,即,采样模式和光谱模式在数学和化学上均具有相等的秩,非常适合MCR-ALS分析。 (C)2015 Elsevier B.V.保留所有权利。

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