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Discrete decoding based ultrafast multidimensional nuclear magnetic resonance spectroscopy

机译:基于离散解码的超快速多维核磁共振波谱

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摘要

The three-dimensional (3D) nuclear magnetic resonance (NMR) spectroscopy constitutes an important and powerful tool in analyzing chemical and biological systems. However, the abundant 3D information arrives at the expense of long acquisition times lasting hours or even days. Therefore, there has been a continuous interest in developing techniques to accelerate recordings of 3D NMR spectra, among which the ultrafast spatiotemporal encoding technique supplies impressive acquisition speed by compressing a multidimensional spectrum in a single scan. However, it tends to suffer from tradeoffs among spectral widths in different dimensions, which deteriorates in cases of NMR spectroscopy with more dimensions. In this study, the discrete decoding is proposed to liberate the ultrafast technique from tradeoffs among spectral widths in different dimensions by focusing decoding on signal-bearing sites. For verifying its feasibility and effectiveness, we utilized the method to generate two different types of 3D spectra. The proposed method is also applicable to cases with more than three dimensions, which, based on the experimental results, may widen applications of the ultrafast technique. (C) 2015 AIP Publishing LLC.
机译:三维(3D)核磁共振(NMR)光谱是分析化学和生物系统的重要且强大的工具。但是,丰富的3D信息是以长时间(甚至数天)的采集时间为代价的。因此,人们一直对开发加速3D NMR光谱记录的技术感兴趣,其中超快速时空编码技术通过在单次扫描中压缩多维光谱来提供令人印象深刻的采集速度。然而,它倾向于遭受不同尺寸的光谱宽度之间的折衷,这在具有更大尺寸的NMR光谱的情况下恶化。在这项研究中,提出了离散解码,以通过将解码集中在承载信号的站点上,从而从不同维度的频谱宽度之间的权衡中解放超快技术。为了验证其可行性和有效性,我们利用该方法生成了两种不同类型的3D光谱。所提出的方法也适用于具有三个以上维度的情况,根据实验结果,这可能会扩展超快技术的应用。 (C)2015 AIP Publishing LLC。

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