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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Chemical shift and magnetic susceptibility contributions to the separation of intracellular and supernatant resonances in variable angle spinning NMR spectra of erythrocyte suspensions.
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Chemical shift and magnetic susceptibility contributions to the separation of intracellular and supernatant resonances in variable angle spinning NMR spectra of erythrocyte suspensions.

机译:化学位移和磁化率有助于红细胞悬液的可变角度旋转NMR光谱中细胞内和上清液共振的分离。

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摘要

Factors contributing to the observation of two separate water resonance arising from erythrocyte suspensions under magic- and variable-angle spinning conditions were examined. By observing the 1H NMR spectra of different chemical species in erythrocytes at different spinning angles, two major effects of comparable magnitude were shown to contribute to the separation: 1) an isotropic chemical shift difference, and 2) a susceptibility difference between the intracellular and supernatant compartments. When the sample was spun at the magic angle, the susceptibility difference did not contribute to the separation. Use of different angles between the spinning axis and the main magnetic field provided a method for quantifiying the isotropic chemical shift and susceptibility differences between the compartments.
机译:检查了在魔角和可变角度旋转条件下,由红细胞悬液引起的两个独立水共振现象的观察因素。通过观察不同旋转角度下红细胞中不同化学物种的1H NMR谱图,可以看出两个可比较大小的主要作用有助于分离:1)各向同性化学位移差异,以及2)细胞内和上清液之间的磁化率差异隔间。当样品以魔术角旋转时,磁化率差异对分离没有贡献。在旋转轴和主磁场之间使用不同的角度提供了一种量化隔室之间各向同性化学位移和磁化率差异的方法。

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