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同核固态核磁共振谱的双重变换——一种缩短测量时间的方法

Dual transformation of homonuclear solid-state NMR spectra--an option to decrease measuring time.

作者信息

Kaiser Christoph, Lopez Jakob J, Bermel Wolfgang, Glaubitz Clemens

机构信息

Institute for Biophysical Chemistry and Center for Biomolecular Magnetic Resonance, J.W. Goethe University, Max von Laue Str. 7, 60438 Frankfurt am Main, Germany.

出版信息

Biochim Biophys Acta. 2007 Dec;1768(12):3107-15. doi: 10.1016/j.bbamem.2007.09.004. Epub 2007 Sep 19.

Abstract

Long measurement times due to low sensitivity are a prime concern in solid-state NMR and limit the application of multidimensional experiments severely. One possibility to address this problem could be post-experimental suppression of noise and a reduction of the number of increments needed for higher dimensional data sets. This can be achieved by a hybrid approach based on the combination of separately Fourier transformed and covariance processed datasets. The method is applied to synthetic sets as well as to experimental two-dimensional homonuclear solid-state NMR spectra of peptide samples. It is demonstrated that a reduction in experiment time by a factor of 4 can be achieved for the case of a 13C-13C correlation spectrum on the nonapeptide bradykinin.

摘要

由于灵敏度低导致测量时间长,这是固态核磁共振中的一个主要问题,严重限制了多维实验的应用。解决这个问题的一种可能性可能是实验后对噪声进行抑制,并减少高维数据集所需的增量数量。这可以通过一种混合方法来实现,该方法基于分别进行傅里叶变换和协方差处理的数据集的组合。该方法应用于合成数据集以及肽样品的实验二维同核固态核磁共振谱。结果表明,对于九肽缓激肽的13C-13C相关谱,实验时间可以缩短4倍。

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