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多维扩散磁共振成像

Multidimensional diffusion MRI.

作者信息

Topgaard Daniel

机构信息

Physical Chemistry, Lund University, P.O.B. 124, SE-22100 Lund, Sweden.

出版信息

J Magn Reson. 2017 Feb;275:98-113. doi: 10.1016/j.jmr.2016.12.007. Epub 2016 Dec 19.

Abstract

Principles from multidimensional NMR spectroscopy, and in particular solid-state NMR, have recently been transferred to the field of diffusion MRI, offering non-invasive characterization of heterogeneous anisotropic materials, such as the human brain, at an unprecedented level of detail. Here we revisit the basic physics of solid-state NMR and diffusion MRI to pinpoint the origin of the somewhat unexpected analogy between the two fields, and provide an overview of current diffusion MRI acquisition protocols and data analysis methods to quantify the composition of heterogeneous materials in terms of diffusion tensor distributions with size, shape, and orientation dimensions. While the most advanced methods allow estimation of the complete multidimensional distributions, simpler methods focus on various projections onto lower-dimensional spaces as well as determination of means and variances rather than actual distributions. Even the less advanced methods provide simple and intuitive scalar parameters that are directly related to microstructural features that can be observed in optical microscopy images, e.g. average cell eccentricity, variance of cell density, and orientational order - properties that are inextricably entangled in conventional diffusion MRI. Key to disentangling all these microstructural features is MRI signal acquisition combining isotropic and directional dimensions, just as in the field of multidimensional solid-state NMR from which most of the ideas for the new methods are derived.

摘要

多维核磁共振光谱学原理,尤其是固态核磁共振原理,最近已被应用于扩散磁共振成像领域,以前所未有的细节水平对异质各向异性材料(如人类大脑)进行无创表征。在这里,我们重新审视固态核磁共振和扩散磁共振成像的基本物理原理,以确定这两个领域之间某种意外相似性的根源,并概述当前的扩散磁共振成像采集协议和数据分析方法,以便根据具有尺寸、形状和方向维度的扩散张量分布来量化异质材料的组成。虽然最先进的方法能够估计完整的多维分布,但更简单的方法则侧重于向低维空间的各种投影以及均值和方差的确定,而非实际分布。即使是不太先进的方法也能提供简单直观的标量参数,这些参数与光学显微镜图像中可观察到的微观结构特征直接相关,例如平均细胞偏心率、细胞密度方差和取向有序性——这些属性在传统扩散磁共振成像中紧密交织。解开所有这些微观结构特征的关键在于结合各向同性和方向维度的磁共振成像信号采集,就如同在多维固态核磁共振领域一样,新方法的大部分思路都源于此。

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