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顺磁离子对溶剂质子的弛豫作用及其对磁场和化学环境的依赖性:对核磁共振成像的影响。

Relaxation of solvent protons by paramagnetic ions and its dependence on magnetic field and chemical environment: implications for NMR imaging.

作者信息

Koenig S H, Brown R D

出版信息

Magn Reson Med. 1984 Dec;1(4):478-95. doi: 10.1002/mrm.1910010407.

Abstract

Paramagnetic ions have been used to alter the magnetic relaxation rates 1/T1 and 1/T2 of solvent water protons since the first observations of a proton resonance signal almost four decades ago. The earliest theories of relaxation indicated that the influence of solute paramagnetic ions on relaxation rates of solvent protons should depend both on the chemical environment of the solute ions and on the magnetic field strength. Much knowledge, both experimental and theoretical, has since been amassed regarding relaxation effects in solutions of hydrated ions (aquoions) and of complexes of these ions with macromolecules, mainly proteins. The phenomena are well understood at this point, though the understanding is more retrospective than predictive for ion-protein complexes. Nonetheless, from what is now known about homogeneous solutions, and from current reports on the introduction of paramagnetic ions into tissue to alter contrast in NMR images by affecting relaxation rates, it is clear that the solution results are particularly germane, and transferable, to tissue investigations. The main features of relaxation of solvent protons in the presence of solute paramagnetic ions, as hydrated aquoions and complexed with protein, are presented here, with attention to those ions most relevant to in vivo studies, and with emphasis on the influence of the magnetic field and the chemical environment of these ions on solvent proton relaxation rates.

摘要

自从大约四十年前首次观察到质子共振信号以来,顺磁性离子就被用于改变溶剂水质子的磁弛豫率1/T1和1/T2。最早的弛豫理论表明,溶质顺磁性离子对溶剂质子弛豫率的影响应既取决于溶质离子的化学环境,又取决于磁场强度。从那时起,关于水合离子(水合离子)溶液以及这些离子与大分子(主要是蛋白质)的络合物溶液中的弛豫效应,已经积累了大量的实验和理论知识。尽管对于离子-蛋白质复合物的理解更多是回顾性的而非预测性的,但目前对这些现象已经有了很好的理解。尽管如此,从目前关于均相溶液的已知信息,以及关于将顺磁性离子引入组织以通过影响弛豫率来改变NMR图像对比度的当前报道来看,很明显溶液的结果与组织研究特别相关且可转移。本文介绍了在溶质顺磁性离子存在下,作为水合水合离子以及与蛋白质络合时溶剂质子弛豫的主要特征,关注那些与体内研究最相关的离子,并强调磁场和这些离子的化学环境对溶剂质子弛豫率的影响。

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