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Analysis of dissolved organic matter fluorescence using self-organizing maps: mini-review and tutorial

机译:使用自组织映射图分析溶解的有机物荧光:迷你审查和教程

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摘要

The analysis of dissolved organic matter (DOM) fluorescence has facilitated tracing throughout both natural and engineered aquatic systems, and the connection of DOM quality to its effectiveness as a binding agent, nutrient source, and generator of disinfection byproducts. While methods that deconvolute fluorescence into distinct underlying components have been instrumental in this endeavour, the vast majority of subsequent analyses has been limited to isolated parts/components, whereas DOM is a complex and dynamic system of interacting molecules. Tools for pattern recognition such as Kohonen's self-organizing maps (SOMs) are capable of analyzing DOM fluorescence holistically, either by recomposing the parts isolated via PARAFAC, or by analyzing fluorescence in its entirety; however, the SOM has been underutilized in this endeavour, largely due to the difficulty of implementation and optimization. This report briefly summarizes the prior application of the SOM to DOM fluorescence, followed by a brief introduction to its theory and utility. An instructional tutorial and user-friendly 'Fluor_SOmap' Matlab package have been included to assist researchers in implementing SOMs. Four modes of fluorescence data analysis are facilitated by the package, including: whole EEMs, excitation-emission wavelength pairs, component scores from PARAFAC, and overall fluorescence composition. It is hoped that this tutorial and the associated package will help researchers implement and interpret SOMs to extend the scope and utility of fluorescence analysis.
机译:溶解有机物(DOM)荧光的分析有助于在整个自然和工程水生系统中进行追踪,并将DOM质量与其作为粘合剂,营养源和消毒副产物的产生力的有效性联系起来。尽管将荧光反卷积为不同的潜在成分的方法在此工作中发挥了作用,但随后的绝大多数分析仅限于分离的部分/成分,而DOM是相互作用分子的复杂而动态的系统。诸如Kohonen的自组织图(SOM)之类的模式识别工具能够通过重组通过PARAFAC分离的部分或通过整体分析荧光来全面分析DOM荧光。但是,SOM在这项工作中并未得到充分利用,这在很大程度上是由于难以实施和优化。本报告简要总结了SOM在DOM荧光上的先期应用,然后简要介绍了其理论和实用性。随附了指导性教程和用户友好的“ Fluor_SOmap” Matlab软件包,以帮助研究人员实施SOM。软件包提供了四种模式的荧光数据分析,包括:整个EEM,激发-发射波长对,PARAFAC的组分评分以及总体荧光组成。希望本教程和相关的软件包能够帮助研究人员实现和解释SOM,以扩展荧光分析的范围和实用性。

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