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KairosMS: A New Solution for the Processing of Hyphenated Ultrahigh Resolution Mass Spectrometry Data

机译:Kairsms:一种用于处理连字的超高分辨率质谱数据的新解决方案

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The use of hyphenated Fourier transform mass spectrometry (FTMS) methods affords additional information about complex chemical mixtures. Coeluted components can be resolved thanks to the ultrahigh resolving power, which also allows extracted ion chromatograms (EICs) to be used for the observation of isomers. As such data sets can be large and data analyses laborious, improved tools are needed for data analyses and extraction of key information. The typical workflow for this type of data is based upon manually dividing the total ion chromatogram (TIC) into several windows of usually equal retention time, averaging the signal of each window to create a single mass spectrum, extracting a peak list, performing the compositional assignments, visualizing the results, and repeating the process for each window. Through removal of the need to manually divide a data set into many time windows and analyze each one, a time-consuming workflow has been significantly simplified. An environmental sample from the oil sands region of Alberta, Canada, and dissolved organic matter samples from the Suwannee River Fulvic Acid (SRFA) and marine waters (Marine DOM) were used as a test bed for the new method. A complete solution named KairosMS was developed in the R language utilizing the Tidyverse packages and Shiny for the user interface. KairosMS imports raw data from common file types, processes it, and exports a mass list for compositional assignments. KairosMS then incorporates those assignments for analysis and visualization. The present method increases the computational speed while reducing the manual work of the analysis when compared to other current methods. The algorithm subsequently incorporates the assignments into the processed data set, generating a series of interactive plots, EICs for individual components or entire compound classes, and can export raw data or graphics for off-line use. Using the example of petroleum related data, it is then visualized according to heteroatom class, carbon number, double bond equivalents, and retention time. The algorithm also gives the ability to screen for isomeric contributions and to follow homologous series or compound classes, instead of individual components, as a function of time.
机译:用连字形的傅立叶变换质谱(FTMS)方法的使用提供了有关复杂化学混合物的额外信息。由于超高压分辨率,可以解决共面分量,这也允许提取的离子色谱图(EIC)用于观察异构体。由于这种数据集可以大而且数据分析费力,需要改进的工具,以便数据分析和提取关键信息。这种类型数据的典型工作流程是基于手动将总离子色谱图(TIC)分成几个通常等于保留时间的窗口,平均每个窗口的信号以创建单个质谱,提取峰值列表,执行组合物分配,可视化结果,并重复每个窗口的过程。通过删除需要手动将数据集分为许多时间窗口并分析每个数据,已经显着简化了耗时的工作流程。来自加拿大,加拿大,加拿大的油砂区域的环境样品,以及来自Suwannee河富瑞酸(SRFA)和海水(Marine Dom)的溶解有机物样品用作新方法的试验台。在R语言中开发了一个名为Kairsms的完整解决方案,利用了潮流包和闪亮的用户界面。 kairosms从公共文件类型导入原始数据,处理它,并导出组成分配的质量列表。然后,Kairosms将这些分配融入了分析和可视化。本方法增加了计算速度,同时与其他电流方法相比减少了分析的手工工作。该算法随后将分配合并到处理的数据集中,生成一系列交互绘图,各个组件的EIC或整个复合类,并且可以导出原始数据或图形以进行离线使用。使用石油相关数据的示例,然后根据杂原子类,碳数,双键等同物和保留时间来可视化。该算法还提供了筛选异构贡献的能力,并遵循同源系列或复合类,而不是单独的组件作为时间的函数。

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