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A solution to the 1D NMR alignment problem using an extended generalized fuzzy Hough transform and mode support

机译:使用扩展的广义模糊Hough变换和模式支持来解决一维NMR对准问题

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This paper approaches the problem of intersample peak correspondence in the context of later applying statistical data analysis techniques to 1D 1H-nuclear magnetic resonance (NMR) data. Any data analysis methodology will fail to produce meaningful results if the analyzed data table is not synchronized, i.e., each analyzed variable frequency (Hz) does not originate from the same chemical source throughout the entire dataset. This is typically the case when dealing with NMR data from biological samples. In this paper, we present a new state of the art for solving this problem using the generalized fuzzy Hough transform (GFHT). This paper describes significant improvements since the method was introduced for NMR datasets of plasma in Csenki et al. (Anal Bioanal Chem 389:875-885, 15) and is now capable of synchronizing peaks from more complex datasets such as urine as well as plasma data. We present a novel way of globally modeling peak shifts using principal component analysis, a new algorithm for calculating the transform and an effective peak detection algorithm. The algorithm is applied to two real metabonomic 1H-NMR datasets and the properties of the method are compared to bucketing. We implicitly prove that GFHT establishes the objectively true correspondence. Desirable features of the GFHT are: (1) intersample peak correspondence even if peaks change order on the frequency axis and (2) the method is symmetric with respect to the samples.
机译:本文在稍后将统计数据分析技术应用于一维1H核磁共振(NMR)数据的背景下,解决了样本间峰对应问题。如果所分析的数据表不同步,则任何数据分析方法都将无法产生有意义的结果,即每个分析的可变频率(Hz)并非源自整个数据集中的同一化学来源。处理来自生物样品的NMR数据时通常就是这种情况。在本文中,我们提出了使用广义模糊霍夫变换(GFHT)解决此问题的最新技术。本文介绍了重大改进,因为该方法是在Csenki等人的血浆NMR数据集中引入的。 (Anal Bioanal Chem 389:875-885,15),现在能够同步来自更复杂的数据集(如尿液和血浆数据)的峰。我们提出了一种使用主成分分析对峰漂移进行全局建模的新方法,一种用于计算变换的新算法以及一种有效的峰检测算法。该算法被应用于两个真实的代谢组学1 H-NMR数据集,并将该方法的性质与存储进行了比较。我们暗中证明GFHT建立了客观真实的对应关系。 GFHT的理想特征是:(1)即使峰在频率轴上改变顺序,样品之间的峰对应性也是如此(2)该方法相对于样品对称。

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