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The effect of data matrix augmentation and constraints in extended multivariate curve resolution-alternating least squares

机译:数据矩阵增强和约束在扩展多元曲线分辨率交替最小二乘法中的影响

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The reliability of results obtained by multivariate curve resolution (MCR) methods is strongly dependent on the absence or presence of a small degree of rotational ambiguity associated to them. In this work, the effect of rotational ambiguities on the profiles resolved by MCR methods is examined in detail for cases of interest to analytical chemistry, where a number of calibration samples are usually prepared containing analyte standards, while test samples may contain additional uncalibrated constituents. These multiple chemical data sets having common constituents are simultaneously analyzed using matrix augmentation strategies. In these cases, conditions for better resolution and improved profiles are more easily achieved. To evaluate the extension of rotational ambiguities and to quantify their reduction after matrix augmentation, we applied the MCR-BANDS procedure. Results obtained by the application of this procedure confirmed that the simultaneous analysis of multiple data sets decreased considerably the extension of rotational ambiguities compared with those obtained when only a single data set is analyzed. Simulated and experimental data sets of interest to second-order analytical calibration are discussed.
机译:通过多变量曲线分辨率 (MCR) 方法获得的结果的可靠性很大程度上取决于是否存在与之相关的小程度的旋转模糊性。在这项工作中,详细研究了旋转模糊性对 MCR 方法解析的轮廓的影响,以了解分析化学感兴趣的情况,其中通常制备许多含有分析物标准品的校准样品,而测试样品可能含有其他未校准的成分。使用基质增强策略同时分析这些具有共同成分的多个化学数据集。在这些情况下,更容易实现更好的分辨率和改进轮廓的条件。为了评估旋转模糊度的扩展并量化矩阵增强后它们的减少,我们应用了MCR-BANDS程序。应用该程序获得的结果证实,与仅分析单个数据集时获得的分离性相比,同时分析多个数据集大大减少了旋转模糊性的扩展。讨论了与二阶分析校准相关的模拟和实验数据集。

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