Pulsed-field gradient nuclear magnetic resonance as a tool for studying translational diffusion, part 1: basic theory

W. S. Price
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引用次数: 608

Abstract

Translational diffusion is the most fundamental form of transport in chemical and biochemical systems. Pulsed-field gradient nuclear magnetic resonance provides a convenient and noninvasive means for measuring translational motion. In this method the attenuation of the echo signal from a Hahn spin-echo pulse sequence containing a magnetic field gradient pulse in each τ period is used to measure the displacement of the observed spins. In the present article, the physical basis of this method is considered in detail. Starting from the Bloch equations containing diffusion terms, the (analytical) equation linking the echo attenuation to the diffusion of the spin for the case of unrestricted isotropic diffusion is derived. When the motion of the spin occurs within a confined geometry or is anisotropic, such as in in vivo systems, the echo attenuation also yields information on the surrounding structure, but as the analytical approach becomes mathematically intractable, approximate or numerical means must be used to extract the motional information. In this work, two common approximations are considered and their limitations are examined. Measurements in anisotropic systems are also considered in some detail. ©1997 John Wiley & Sons, Inc. Concepts Magn Reson 9: 299–336, 1997
脉冲场梯度核磁共振作为研究平移扩散的工具,第一部分:基础理论
平移扩散是化学和生化系统中最基本的传递形式。脉冲场梯度核磁共振为测量平移运动提供了一种方便、无创的方法。在该方法中,利用哈恩自旋回波脉冲序列在每个τ周期中包含磁场梯度脉冲的回波信号衰减来测量观测到的自旋位移。在本文中,详细考虑了这种方法的物理基础。从包含扩散项的布洛赫方程出发,导出了无限制各向同性扩散情况下回声衰减与自旋扩散的(解析)方程。当自旋运动发生在一个有限的几何形状或各向异性时,如在体内系统中,回波衰减也产生了周围结构的信息,但由于分析方法在数学上变得难以处理,必须使用近似或数值方法来提取运动信息。在这项工作中,考虑了两种常见的近似,并检查了它们的局限性。对各向异性系统的测量也作了一些详细的考虑。©1997 John Wiley & Sons, Inc理论与实践,1997,19 (2):1 - 3
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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