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一般杂散场核磁共振实验中的扩散与弛豫效应

Diffusion and relaxation effects in general stray field NMR experiments.

作者信息

Hürlimann M D

机构信息

Schlumberger-Doll Research, Ridgefield, Connecticut 06877-4108, USA.

出版信息

J Magn Reson. 2001 Feb;148(2):367-78. doi: 10.1006/jmre.2000.2263.

DOI:10.1006/jmre.2000.2263
PMID:11237644
Abstract

We analyze the evolution of magnetization following any series of radiofrequency pulses in strongly inhomogeneous fields, with particular attention to diffusion and relaxation effects. When the inhomogeneity of the static magnetic field approaches or exceeds the strength of the RF field, the magnetization has contributions from different coherence pathways. The diffusion or relaxation induced decay of the signal amplitude is in general nonexponential, even if the sample has single relaxation times T(1), T(2) and a single diffusion coefficient D. In addition, the shape of the echo depends on diffusion and relaxation. It is possible to separate contributions from different coherence pathways by phase cycling of the RF pulses. The general analysis is tested on stray field measurements using two different pulse sequences. We find excellent agreement between measurements and calculations. The inversion recovery sequence is used to study the relaxation effects. We demonstrate two different approaches of data analysis to extract the relaxation time T(1). Finite pulse width effects on the timing of the echo formation are also studied. Diffusion effects are analyzed using the Carr--Purcell--Meiboom--Gill sequence. In a stray field of a constant gradient g, we find that unrestricted diffusion leads to nonexponential signal decay versus echo number N, but within experimental error the diffusion attenuation is still only a function of g(2)Dt(3)(E)N, where t(E) is the echo spacing.

摘要

我们分析了在强非均匀场中任意一系列射频脉冲作用下磁化强度的演变,特别关注扩散和弛豫效应。当静磁场的不均匀性接近或超过射频场的强度时,磁化强度来自不同的相干路径。即使样品具有单一的弛豫时间T(1)、T(2)和单一的扩散系数D,由扩散或弛豫引起的信号幅度衰减通常也不是指数形式的。此外,回波的形状取决于扩散和弛豫。通过射频脉冲的相位循环可以分离来自不同相干路径的贡献。在使用两种不同脉冲序列的杂散场测量中对一般分析进行了测试。我们发现测量结果与计算结果非常吻合。反转恢复序列用于研究弛豫效应。我们展示了两种不同的数据分析方法来提取弛豫时间T(1)。还研究了有限脉冲宽度对回波形成时间的影响。使用Carr - Purcell - Meiboom - Gill序列分析扩散效应。在恒定梯度g的杂散场中,我们发现无限制扩散导致信号衰减与回波数N呈非指数关系,但在实验误差范围内,扩散衰减仍然只是g(2)Dt(3)(E)N的函数,其中t(E)是回波间隔。

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