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ENHANCEMENT OF SOLUTION NMR AND MRI WITH LASER-POLARIZED XENON

机译:激光极化氙增强溶液NMR和MRI

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摘要

Optical pumping with laser light can be used to polarize the nuclear spins of gaseous xenon-129. When hyperpolarized xenon-129 is dissolved in liquids, a time-dependent departure of the proton spin polarization from its thermal equilibrium is observed, The variation of the magnetization is an unexpected manifestation of the nuclear Overhauser effect, a consequence of cross-relaxation between the spins of solution protons and dissolved xenon-129. Time-resolved magnetic resonance images of both nuclei in solution show that the proton magnetization is selectively perturbed in regions containing spin-polarized xenon-129. This effect could find use in nuclear magnetic resonance spectroscopy of surfaces and proteins and in magnetic resonance imaging.
机译:激光光泵浦可用于极化气态氙129的核自旋。当超极化氙气129溶解在液体中时,观察到质子自旋极化随时间的变化偏离其热平衡。溶液质子和溶解的氙129自旋。溶液中两个原子核的时间分辨磁共振图像显示,质子磁化在包含自旋极化氙129的区域中被选择性地扰动。该效应可用于表面和蛋白质的核磁共振光谱学以及磁共振成像中。

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