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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Evaluation of the extension of rotation ambiguity associated to multivariate curve resolution solutions by the application of the MCR-BANDS method
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Evaluation of the extension of rotation ambiguity associated to multivariate curve resolution solutions by the application of the MCR-BANDS method

机译:通过应用MCR频段方法评估与多变量曲线分辨率解决方案相关的旋转模糊的延伸

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Multivariate Curve Resolution (MCR) methods have been widely used to resolve the spectra (instrumental responses) and concentration profiles of the unknown constituents of chemical mixtures especially when no prior information is available about the nature and composition of these mixtures. Based on the fulfillment of a bilinear model, like the multivariate extension of Beer's law, MCR solutions are affected by rotation ambiguity, which means that a range of feasible solutions can explain the observed data equally well fulfilling the same constraints. The MCR-BANDS method has been proposed to provide a measure of the extension of rotation ambiguity associated to a particular MCR feasible solution. In this work, the two extreme (maximum and minimum) feasible solutions obtained by the MCR-BANDS method are investigated and projected on to the area of feasible solution (AFS) obtained by other methods like the FACPACK method, and compared under the application of different constraints. In contrast to other methods that estimate the whole set of feasible solutions (i.e. the AFS), MCR-BANDS provides a simpler and flexible way to give an estimation of the extension of rotation ambiguity associated to a particular MCR solution (for instance using the MCR-ALS method) of systems with any number of components and under any type of constraints, in the concentration and spectral domains.
机译:多变量曲线分辨率(MCR)方法已被广泛用于解决化学混合物的未知成分的光谱(仪器响应)和浓度谱,特别是当没有关于这些混合物的性质和组成的先前信息时。基于Bilinear模型的实现,如啤酒法的多元扩展,MCR溶液受旋转模糊的影响,这意味着一系列可行的解决方案可以解释观察到的数据同样良好地满足相同的约束。已经提出了MCR频带方法,以提供与特定MCR可行溶液相关的旋转模糊的延伸的量度。在这项工作中,通过MCR频带方法获得的两个极端(最大和最小和最小)可行的解决方案,并投影到通过其他方法获得的可行解决方案(AFS)的面积,如FACPACK方法,并在应用下进行比较不同的约束。与估计整个可行解决方案(即AFS)的其他方法相比,MCR频带提供更简单且灵活的方法,以估计与特定MCR溶液相关联的旋转模糊的延伸(例如使用MCR - 在浓度和光谱域中的任何类型组件和任何类型的约束下的系统的方法)。

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