SimpleNMR:一种利用标准一维和二维核磁共振实验帮助验证立宪异构体的交互式图网络方法。

IF 1.9 3区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Eric Hughes, Alan M. Kenwright
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引用次数: 0

摘要

尽管在计算机自动解决方案方面取得了进展,但使用一维和二维数据集进行核磁共振异构体制宪验证主要仍是一项人工操作的用户密集型工作,由于多种原因,这项工作极具挑战性。其中包括同时跟踪来自多个独立 NMR 实验的信息,以及在无需独立重复整个分析的情况下,让另一位研究人员随后验证所做分配的困难。本文介绍的图形交互式方法克服了其中一些问题。通过使用图形网络可视化的概念,我们能够以一种直接突出不同 NMR 实验与相关分子之间联系的方式来表示 NMR 数据。此外,通过使图形网络具有交互性,用户可以轻松验证和纠正分配,并了解在得出解决方案时所做出的决定。我们用 Python 编写了一个可用的概念验证计算机程序 "simpleNMR",以说明我们的想法和方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

SimpleNMR: An interactive graph network approach to aid constitutional isomer verification using standard 1D and 2D NMR experiments

SimpleNMR: An interactive graph network approach to aid constitutional isomer verification using standard 1D and 2D NMR experiments

Despite progress in computer automated solutions, constitutional isomer verification by NMR using one- and two-dimensional data sets is still, in the main, a manual, user-intensive activity that is challenging for a number of reasons. These include the problem of simultaneously keeping track of the information from a number of separate NMR experiments and the difficulty of another researcher subsequently verifying the assignments made without having to independently repeat the whole analysis. This paper describes a graphical interactive approach that overcomes some of these problems. By using concepts used to visualise graph networks, we have been able to represent the NMR data in a manner that highlights directly the link between the different NMR experiments and the molecule of interest. Furthermore, by making the graph networks interactive, a user can easily validate and correct the assignment and understand the decisions made in arriving at the solution. We have developed a usable proof-of-concept computer program, ‘simpleNMR’, written in Python to illustrate the ideas and approach.

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来源期刊
CiteScore
4.70
自引率
10.00%
发文量
99
审稿时长
1 months
期刊介绍: MRC is devoted to the rapid publication of papers which are concerned with the development of magnetic resonance techniques, or in which the application of such techniques plays a pivotal part. Contributions from scientists working in all areas of NMR, ESR and NQR are invited, and papers describing applications in all branches of chemistry, structural biology and materials chemistry are published. The journal is of particular interest not only to scientists working in academic research, but also those working in commercial organisations who need to keep up-to-date with the latest practical applications of magnetic resonance techniques.
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