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High-resolution nuclear magnetic resonance measurements in inhomogeneous magnetic fields: A fast two-dimensional J-resolved experiment

机译:非均质磁场中的高分辨率核磁共振测量:快速二维J分辨实验

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摘要

High spectral resolution in nuclear magnetic resonance (NMR) is a prerequisite for achieving accurate information relevant to molecular structures and composition assignments. The continuous development of superconducting magnets guarantees strong and homogeneous static magnetic fields for satisfactory spectral resolution. However, there exist circumstances, such as measurements on biological tissues and heterogeneous chemical samples, where the field homogeneity is degraded and spectral line broadening seems inevitable. Here we propose an NMR method, named intermolecular zero-quantum coherence J-resolved spectroscopy (iZQC-JRES), to face the challenge of field inhomogeneity and obtain desired high-resolution two-dimensional J-resolved spectra with fast acquisition. Theoretical analyses for this method are given according to the intermolecular multiple-quantum coherence treatment. Experiments on (a) a simple chemical solution and (b) an aqueous solution of mixed metabolites under externally deshimmed fields, and on (c) a table grape sample with intrinsic field inhomogeneity from magnetic susceptibility variations demonstrate the feasibility and applicability of the iZQC-JRES method. The application of this method to inhomogeneous chemical and biological samples, maybe in vivo samples, appears promising. (C) 2016 AIP Publishing LLC.
机译:核磁共振(NMR)中的高光谱分辨率是获得与分子结构和组成分配相关的准确信息的先决条件。超导磁体的不断发展保证了强大且均匀的静磁场,可实现令人满意的光谱分辨率。但是,存在诸如在生物组织和异质化学样品上进行测量的情况,其中场均一性降低并且光谱线变宽似乎是不可避免的。在这里,我们提出了一种称为分子间零量子相干J分辨光谱学(iZQC-JRES)的NMR方法,以应对场不均匀性的挑战,并以快速采集获得所需的高分辨率二维J分辨谱。根据分子间多量子相干处理给出了该方法的理论分析。在(a)一种简单的化学溶液和(b)在外部除湿的野外的混合代谢物的水溶液上进行的实验,以及在(c)一块因磁化率变化而具有内在场不均匀性的食用葡萄样品上的实验证明了iZQC-的可行性和适用性JRES方法。这种方法应用于不均匀的化学和生物学样品,可能是体内样品,似乎很有希望。 (C)2016 AIP出版有限责任公司。

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