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用于更可靠地确定有机化合物结构的人类和计算机可访问的二维相关数据。研究人员、软件开发人员、光谱仪管理人员、期刊编辑、审稿人、出版商和数据库管理人员在核磁共振光谱人工智能分析方面的未来作用。

Human- and computer-accessible 2D correlation data for a more reliable structure determination of organic compounds. Future roles of researchers, software developers, spectrometer managers, journal editors, reviewers, publisher and database managers toward artificial-intelligence analysis of NMR spectra.

作者信息

Jeannerat Damien

机构信息

Department of Organic Chemistry, University of Geneva, Geneva 4, Switzerland.

出版信息

Magn Reson Chem. 2017 Jan;55(1):7-14. doi: 10.1002/mrc.4527. Epub 2016 Oct 2.

Abstract

The introduction of a universal data format to report the correlation data of 2D NMR spectra such as COSY, HSQC and HMBC spectra will have a large impact on the reliability of structure determination of small organic molecules. These lists of assigned cross peaks will bridge signals found in NMR 1D and 2D spectra and the assigned chemical structure. The record could be very compact, human and computer readable so that it can be included in the supplementary material of publications and easily transferred into databases of scientific literature and chemical compounds. The records will allow authors, reviewers and future users to test the consistency and, in favorable situations, the uniqueness of the assignment of the correlation data to the associated chemical structures. Ideally, the data format of the correlation data should include direct links to the NMR spectra to make it possible to validate their reliability and allow direct comparison of spectra. In order to take the full benefits of their potential, the correlation data and the NMR spectra should therefore follow any manuscript in the review process and be stored in open-access database after publication. Keeping all NMR spectra, correlation data and assigned structures together at all time will allow the future development of validation tools increasing the reliability of past and future NMR data. This will facilitate the development of artificial intelligence analysis of NMR spectra by providing a source of data than can be used efficiently because they have been validated or can be validated by future users. Copyright © 2016 John Wiley & Sons, Ltd.

摘要

引入一种通用数据格式来报告二维核磁共振谱(如COSY、HSQC和HMBC谱)的相关数据,将对小分子有机化合物结构测定的可靠性产生重大影响。这些已归属交叉峰列表将在核磁共振一维谱和二维谱中找到的信号与已归属的化学结构之间架起桥梁。该记录可以非常紧凑,便于人类阅读和计算机读取,因此可以包含在出版物的补充材料中,并轻松转移到科学文献和化合物数据库中。这些记录将使作者、审稿人和未来的用户能够检验相关性数据与相关化学结构归属的一致性,在有利的情况下,还能检验其唯一性。理想情况下,相关性数据的数据格式应包括与核磁共振谱的直接链接,以便能够验证其可靠性并直接比较谱图。因此,为了充分发挥其潜力,相关性数据和核磁共振谱在评审过程中应随任何稿件一同提交,并在发表后存储在开放获取数据库中。始终将所有核磁共振谱、相关性数据和已归属结构保存在一起,将有助于未来开发验证工具,提高过去和未来核磁共振数据的可靠性。这将通过提供一种可有效利用的数据来源来促进核磁共振谱人工智能分析的发展,因为这些数据已经经过验证或可被未来用户验证。版权所有© 2016约翰·威利父子有限公司。

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