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人类视觉白质通路的束路测量:在健康与疾病中的应用

Tractometry of Human Visual White Matter Pathways in Health and Disease.

机构信息

Division of Sensory and Cognitive Brain Mapping, Department of System Neuroscience, National Institute for Physiological Sciences, Okazaki, Aichi, Japan.

Graduate Institute for Advanced Studies, SOKENDAI, Hayama, Kanagawa, Japan.

出版信息

Magn Reson Med Sci. 2024 Jul 1;23(3):316-340. doi: 10.2463/mrms.rev.2024-0007. Epub 2024 Jun 12.

Abstract

Diffusion-weighted MRI (dMRI) provides a unique non-invasive view of human brain tissue properties. The present review article focuses on tractometry analysis methods that use dMRI to assess the properties of brain tissue within the long-range connections comprising brain networks. We focus specifically on the major white matter tracts that convey visual information. These connections are particularly important because vision provides rich information from the environment that supports a large range of daily life activities. Many of the diseases of the visual system are associated with advanced aging, and tractometry of the visual system is particularly important in the modern aging society. We provide an overview of the tractometry analysis pipeline, which includes a primer on dMRI data acquisition, voxelwise model fitting, tractography, recognition of white matter tracts, and calculation of tract tissue property profiles. We then review dMRI-based methods for analyzing visual white matter tracts: the optic nerve, optic tract, optic radiation, forceps major, and vertical occipital fasciculus. For each tract, we review background anatomical knowledge together with recent findings in tractometry studies on these tracts and their properties in relation to visual function and disease. Overall, we find that measurements of the brain's visual white matter are sensitive to a range of disorders and correlate with perceptual abilities. We highlight new and promising analysis methods, as well as some of the current barriers to progress toward integration of these methods into clinical practice. These barriers, such as variability in measurements between protocols and instruments, are targets for future development.

摘要

弥散张量磁共振成像(dMRI)为人类脑组织特性提供了独特的无创视角。本综述文章聚焦于使用 dMRI 评估脑网络中长程连接内脑组织特性的束流分析方法。我们特别关注传递视觉信息的主要白质束。这些连接非常重要,因为视觉为日常生活的各种活动提供了丰富的环境信息。许多视觉系统疾病都与衰老有关,因此视觉系统的束流分析在现代老龄化社会中尤为重要。我们提供了束流分析管道的概述,其中包括 dMRI 数据采集、体素模型拟合、束流追踪、白质束识别以及束组织特性曲线计算的简介。然后,我们回顾了基于 dMRI 的视觉白质束分析方法:视神经、视束、视辐射、内直肌和垂直枕状束。对于每一个束,我们回顾了其背景解剖学知识,以及最近关于这些束及其与视觉功能和疾病相关特性的束流追踪研究中的发现。总的来说,我们发现大脑视觉白质的测量结果对一系列疾病敏感,并与感知能力相关。我们强调了新的、有前途的分析方法,以及将这些方法整合到临床实践中的一些当前障碍。这些障碍,如不同方案和仪器之间测量的可变性,是未来发展的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a812/11234945/8a3075f10706/mrms-23-316-g1.jpg

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