Diffusion MRI in the brain – Theory and concepts

IF 7.3 2区 化学 Q2 CHEMISTRY, PHYSICAL Progress in Nuclear Magnetic Resonance Spectroscopy Pub Date : 2019-06-01 DOI:10.1016/j.pnmrs.2019.03.001
J-Donald Tournier
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引用次数: 50

Abstract

Over the past two decades, diffusion MRI has become an essential tool in neuroimaging investigations. This is due to its sensitivity to the motion of water molecules as they diffuse through the microstructural environment, allowing diffusion MRI to be used as a ‘probe’ of tissue microstructure. Furthermore, this sensitivity is strongly direction-dependent, notably in brain white matter, due to the alignment of structures that restrict or hinder the motion of water molecules, notably axonal membranes. This provides a means of inferring the orientation of fibres in vivo, and by use of appropriate fibre-tracking algorithms, of delineating the path of white matter tracts in the brain. The ability to perform so-called tractography in humans in vivo non-invasively is unique to diffusion MRI, and is now used in applications such as neurosurgery planning and more broadly within investigations of brain connectomics. This review describes the theory and concepts of diffusion MRI and describes its most important areas of application in the brain, with a strong focus on tractography.

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大脑中的扩散MRI——理论和概念。
在过去的二十年中,弥散MRI已成为神经影像学研究的重要工具。这是由于它对水分子在微观结构环境中扩散时的运动很敏感,这使得扩散MRI可以用作组织微观结构的“探针”。此外,这种敏感性是强烈的方向依赖性,特别是在脑白质中,由于结构的排列限制或阻碍水分子的运动,特别是轴突膜。这提供了一种推断体内纤维方向的方法,并通过使用适当的纤维跟踪算法来描绘大脑中白质束的路径。在人体体内进行所谓的无创神经束造影的能力是扩散MRI所独有的,现在被用于神经外科计划等应用,并更广泛地用于脑连接组学研究。本文介绍了弥散MRI的理论和概念,并介绍了其在大脑中最重要的应用领域,重点介绍了神经束成像。
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来源期刊
CiteScore
14.30
自引率
8.20%
发文量
12
审稿时长
62 days
期刊介绍: Progress in Nuclear Magnetic Resonance Spectroscopy publishes review papers describing research related to the theory and application of NMR spectroscopy. This technique is widely applied in chemistry, physics, biochemistry and materials science, and also in many areas of biology and medicine. The journal publishes review articles covering applications in all of these and in related subjects, as well as in-depth treatments of the fundamental theory of and instrumental developments in NMR spectroscopy.
期刊最新文献
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