Ziener C H, Kampf T, Melkus G, Herold V, Weber T, Reents G, Jakob P M, Bauer W R
Julius-Maximilians-Universität Würzburg, Lehrstuhl für Experimentelle Physik 5, Am Hubland, 97074 Würzburg, Germany.
Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Sep;76(3 Pt 1):031915. doi: 10.1103/PhysRevE.76.031915. Epub 2007 Sep 14.
A method describing NMR-signal formation in inhomogeneous tissue is presented which covers all diffusion regimes. For this purpose, the frequency distribution inside the voxel is described. Generalizing the results of the well-known static dephasing regime, we derive a formalism to describe the frequency distribution that is valid over the whole dynamic range. The expressions obtained are in agreement with the results obtained from Kubos line-shape theory. To examine the diffusion effects, we utilize a strong collision approximation, which replaces the original diffusion process by a simpler stochastic dynamics. We provide a generally valid relation between the frequency distribution and the local Larmor frequency inside the voxel. To demonstrate the formalism we give analytical expressions for the frequency distribution and the free induction decay in the case of cylindrical and spherical magnetic inhomogeneities. For experimental verification, we performed measurements using a single-voxel spectroscopy method. The data obtained for the frequency distribution, as well as the magnetization decay, are in good agreement with the analytic results, although experiments were limited by magnetic field gradients caused by an imperfect shim and low signal-to-noise ratio.
本文提出了一种描述非均匀组织中核磁共振信号形成的方法,该方法涵盖了所有扩散机制。为此,描述了体素内的频率分布。在推广著名的静态去相位机制结果的基础上,我们推导出一种形式主义来描述在整个动态范围内有效的频率分布。所得表达式与从久保线形理论获得的结果一致。为了研究扩散效应,我们采用了强碰撞近似,用更简单的随机动力学取代了原来的扩散过程。我们给出了体素内频率分布与局部拉莫尔频率之间普遍有效的关系。为了证明这种形式主义,我们给出了圆柱和球形磁不均匀性情况下频率分布和自由感应衰减的解析表达式。为了进行实验验证,我们使用单体素光谱法进行了测量。尽管实验受到由不完善的匀场引起的磁场梯度和低信噪比的限制,但获得的频率分布数据以及磁化衰减与解析结果吻合良好。