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用于水溶液单量子核磁共振光谱的梯度定制激发

Gradient-tailored excitation for single-quantum NMR spectroscopy of aqueous solutions.

作者信息

Piotto M, Saudek V, Sklenár V

机构信息

Unite Mixte de Recherche Bruker, CNRS, Universite Louis Pasteur UMR50, Wissembourg, France.

出版信息

J Biomol NMR. 1992 Nov;2(6):661-5. doi: 10.1007/BF02192855.

Abstract

A novel approach to tailored selective excitation for the measurement of NMR spectra in non-deuterated aqueous solutions (WATERGATE, WATER suppression by GrAdient-Tailored Excitation) is described. The gradient echo sequence, which effectively combines one selective 180 degrees radiofrequency pulse and two field gradient pulses, achieves highly selective and effective water suppression. This technique is ideally suited for the rapid collection of multi-dimensional data since a single-scan acquisition produces a pure phase NMR spectrum with a perfectly flat baseline, at the highest possible sensitivity. Application to the fast measurement of 2D NOE data of a 2.2 mM solution of a double-stranded DNA fragment in 90% H2O at 5 degrees C is presented.

摘要

本文描述了一种用于在非氘代水溶液中测量核磁共振谱的定制选择性激发的新方法(WATERGATE,梯度定制激发抑制水峰)。梯度回波序列有效地结合了一个选择性180°射频脉冲和两个场梯度脉冲,实现了高度选择性和有效的水峰抑制。该技术非常适合快速采集多维数据,因为单次扫描采集就能以尽可能高的灵敏度产生具有完美平坦基线的纯相核磁共振谱。本文还展示了该技术在5℃下对90% H₂O中2.2 mM双链DNA片段二维NOE数据的快速测量中的应用。

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