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A simple approach to quantitative analysis using three-dimensional spectra based on selected Zernike moments

机译:一种基于选定Zernike矩,使用三维光谱进行定量分析的简单方法

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摘要

A very simple approach to quantitative analysis is proposed based on the technology of digital image processing using three-dimensional (3D) spectra obtained by high-performance liquid chromatography coupled with a diode array detector (HPLC-DAD). As the region-based shape features of a grayscale image, Zernike moments with inherently invariance property were employed to establish the linear quantitative models. This approach was applied to the quantitative analysis of three compounds in mixed samples using 3D HPLC-DAD spectra, and three linear models were obtained, respectively. The correlation coefficients (R~2) for training and test sets were more than 0.999, and the statistical parameters and strict validation supported the reliability of established models. The analytical results suggest that the Zernike moment selected by stepwise regression can be used in the quantitative analysis of target compounds. Our study provides a new idea for quantitative analysis using 3D spectra, which can be extended to the analysis of other 3D spectra obtained by different methods or instruments.
机译:基于数字图像处理技术,提出了一种非常简单的定量分析方法,该技术使用了通过高效液相色谱与二极管阵列检测器(HPLC-DAD)结合获得的三维(3D)光谱。作为灰度图像的基于区域的形状特征,具有固有不变性的Zernike矩用于建立线性定量模型。该方法用于使用3D HPLC-DAD光谱对混合样品中的三种化合物进行定量分析,并分别获得了三个线性模型。训练和测试集的相关系数(R〜2)大于0.999,统计参数和严格的验证支持所建立模型的可靠性。分析结果表明,通过逐步回归选择的Zernike矩可用于目标化合物的定量分析。我们的研究为使用3D光谱进行定量分析提供了新思路,可以将其扩展到通过不同方法或仪器获得的其他3D光谱分析中。

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