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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A novel chromatographic peak alignment method coupled with trilinear decomposition for three dimensional chromatographic data analysis to obtain the second-order advantage
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A novel chromatographic peak alignment method coupled with trilinear decomposition for three dimensional chromatographic data analysis to obtain the second-order advantage

机译:结合三线性分解的新型色谱峰比对方法进行三维色谱数据分析以获得二阶优势

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摘要

The alignment of chromatographic peaks and deconvolution of overlapped peaks still remain challenges in the field of complex sample analysis. In this paper, we highlight a strategy that employs a new time shift alignment method derived from the well-known Rank Minimization method for aligning chromatographic peak shifts among samples and then uses trilinear decomposition methodology to interpret the overlapped chromatographic peaks in order to quantify analytes of interest. The performance of this novel strategy for chromatographic data analysis was evaluated using simulated chromatographic data as well as real chromatographic data. The results indicate that the new time shift alignment method can accurately correct time shifts in test samples even in the presence of unexpected interferences, and thus the low-rank trilinearity of the same analyte can be obtained, which will be helpful for trilinear decomposition to achieve the second-order advantage. Moreover, the results showed that this new alignment method is more automated in comparison with the Rank Minimization method and will be suitable for the alignment of the time shifts of analytes that are completely overlapped by coeluted interferences.
机译:在复杂样品分析领域,色谱峰的对准和重叠峰的去卷积仍然是挑战。在本文中,我们着重介绍了一种策略,该策略采用一种新的时移比对方法,该方法是从众所周知的Rank Minimization方法中得出的,用于在样品之间对色谱峰位移进行比对,然后使用三线性分解方法解释重叠的色谱峰,以便对利益。使用模拟色谱数据以及实际色谱数据评估了这种新颖的色谱数据分析策略的性能。结果表明,即使存在意料之外的干扰,新的时移比对方法也可以准确校正测试样品中的时移,从而可以获得相同分析物的低阶三线性,这将有助于三线性分解的实现。二阶优势。而且,结果表明,与秩最小化方法相比,这种新的比对方法更加自动化,并且将适合于被共洗脱干扰完全重叠的分析物的时移进行比对。

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