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一种用于提高二维核磁共振中间接域采样效率的双傅里叶方法。

A double-Fourier approach to enhance the efficiency of the indirect domain sampling in 2D NMR.

作者信息

Chandrashekar Srinivasan, Shrot Yoav, Frydman Lucio

机构信息

Department of Chemical Physics, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Magn Reson Chem. 2011 Aug;49(8):477-82. doi: 10.1002/mrc.2769. Epub 2011 Jul 14.

Abstract

The relatively long times that may be involved in high-resolution two-dimensional nuclear magnetic resonance (2D NMR) have stimulated the search for alternative schemes to collect these data. Particularly onerous situations arise when both high-resolution and large spectral widths are sought along the indirect domain. Strategies proposed for dealing with such cases include folding-over procedures, Hadamard encoding, and nonlinear data sampling. This communication discusses an alternative strategy, which exploits a partial prior knowledge regarding the position of the NMR resonances along the indirect domain together with customized excitations for every particular t1 increment, to achieve an optimal sampling in terms of resolution and bandwidth. On the basis of such optimized encoding of the indirect-domain evolution, which can easily be coped with by modern spectrometers, it becomes possible to maximize the resolution of fine structures without compromising on the spectral bandwidths. The processing of the resulting data along the indirect domain is based on the use of two serially applied discrete Fourier transforms; one to distinguish the main bands in the spectrum and the other to resolve the latter's fine features. A number of simple heteronuclear correlation experiments illustrating the significant acquisition time savings and simultaneous improvements in resolution that can be achieved with the resulting double-Fourier encoding procedure are illustrated.

摘要

高分辨率二维核磁共振(2D NMR)可能需要较长时间,这促使人们寻找收集这些数据的替代方案。特别是当在间接域中既寻求高分辨率又寻求大光谱宽度时,会出现特别棘手的情况。针对此类情况提出的策略包括折叠程序、哈达玛编码和非线性数据采样。本通讯讨论了一种替代策略,该策略利用关于NMR共振在间接域中的位置的部分先验知识以及针对每个特定t1增量的定制激发,以在分辨率和带宽方面实现最佳采样。基于间接域演化的这种优化编码,现代光谱仪可以轻松应对,从而在不影响光谱带宽的情况下最大化精细结构的分辨率。沿间接域对所得数据的处理基于使用两个串行应用的离散傅里叶变换;一个用于区分光谱中的主要谱带,另一个用于解析后者的精细特征。通过一些简单的异核相关实验说明了由此产生的双傅里叶编码程序可以显著节省采集时间并同时提高分辨率。

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