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首页> 外文期刊>Bulletin of the Korean Chemical Society >Real-time Acquisition of Three Dimensional NMR Spectra by Non-uniform Sampling and Maximum Entropy Processing
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Real-time Acquisition of Three Dimensional NMR Spectra by Non-uniform Sampling and Maximum Entropy Processing

机译:非均匀采样和最大熵处理实时采集三维核磁共振谱

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Of the experiments to shorten NMR measuring time by sparse sampling, non-uniform sampling (NUS) is advantageous. NUS miminizes systematic errors which arise due to the lack of samplings by randomization. In this study, I report the real-time acquisition of 3D NMR data using NUS and maximum-entropy (MaxEnt) data processing. The real-time acquisition combined with NUS can reduce NMR measuring time much more. Compared with multidimensional decomposition (MDD) method, which was originally suggested by Jaravine and Orekhov (JACS 2006,13421-13426), MaxEnt is faster at least several times and more suitable for the realtime acquisition. The designed sampling schedule of current study makes all the spectra during acquisition have the comparable resulting resolutions by MaxEnt. Therefore, one can judge the quality of spectra easily by examining the intensities of peaks. I report two cases of 3D experiments as examples with the simulated sub-dataset from experimental data. In both cases, the spectra having good qualities for data analysis could be obtained only with 3% of original data. Its corresponding NMR measuring time was 8 minutes for 3D HNCO of ubiquitin.
机译:在通过稀疏采样缩短NMR测量时间的实验中,非均匀采样(NUS)是有利的。 NUS减少了由于缺乏随机抽样而引起的系统误差。在这项研究中,我报告了使用NUS和最大熵(MaxEnt)数据处理对3D NMR数据的实时采集。结合NUS的实时采集可以大大减少NMR测量时间。与最初由Jaravine和Orekhov(JACS 2006,13421-13426)提出的多维分解(MDD)方法相比,MaxEnt至少快了好几倍,更适合于实时采集。当前研究的设计采样计划使采集过程中的所有光谱均具有MaxEnt可比的结果分辨率。因此,可以通过检查峰的强度轻松判断光谱的质量。我以实验数据中的模拟子数据集为例,报告了两个3D实验案例。在这两种情况下,只有3%的原始数据才能获得具有良好数据质量的光谱。对于泛素的3D HNCO,其相应的NMR测量时间为8分钟。

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