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人类大脑的扩散张量磁共振成像

Diffusion tensor MR imaging of the human brain.

作者信息

Pierpaoli C, Jezzard P, Basser P J, Barnett A, Di Chiro G

机构信息

Neuroimaging Branch, National Institute of Neurological Diseases and Stroke, National Institutes of Health, Bethesda, MD 20892-1178, USA.

出版信息

Radiology. 1996 Dec;201(3):637-48. doi: 10.1148/radiology.201.3.8939209.

Abstract

PURPOSE

To assess intrinsic properties of water diffusion in normal human brain by using quantitative parameters derived from the diffusion tensor, D, which are insensitive to patient orientation.

MATERIALS AND METHODS

Maps of the principal diffusivities of D, of Trace(D), and of diffusion anisotropy indices were calculated in eight healthy adults from 31 multisection, interleaved echo-planar diffusion-weighted images acquired in about 25 minutes.

RESULTS

No statistically significant differences in Trace(D) (approximately 2,100 x 10(-6) mm2/sec) were found within normal brain parenchyma, except in the cortex, where Trace(D) was higher. Diffusion anisotropy varied widely among different white matter regions, reflecting differences in fiber-tract architecture. In the corpus callosum and pyramidal tracts, the ratio of parallel to perpendicular diffusivities was approximately threefold higher than previously reported, and diffusion appeared cylindrically symmetric. However, in other white matter regions, particularly in the centrum semiovale, diffusion anisotropy was low, and cylindrical symmetry was not observed. Maps of parameters derived from D were also used to segment tissues based on their diffusion properties.

CONCLUSION

A quantitative characterization of water diffusion in anisotropic, heterogeneously oriented tissues is clinically feasible. This should improve the neuroradiologic assessment of a variety of gray and white matter disorders.

摘要

目的

通过使用从扩散张量D导出的对患者取向不敏感的定量参数,评估正常人类大脑中水分子扩散的内在特性。

材料与方法

从在约25分钟内获取的31个多层面、交错的回波平面扩散加权图像中,计算出8名健康成年人的D的主扩散率图、Trace(D)图以及扩散各向异性指数图。

结果

在正常脑实质内,除皮质中Trace(D)较高外,未发现Trace(D)(约2100×10⁻⁶mm²/秒)有统计学上的显著差异。不同白质区域的扩散各向异性差异很大,反映了纤维束结构的差异。在胼胝体和锥体束中,平行与垂直扩散率之比比先前报道的约高三倍,且扩散呈圆柱对称。然而,在其他白质区域,特别是半卵圆中心,扩散各向异性较低,未观察到圆柱对称。从D导出的参数图也用于根据组织的扩散特性对其进行分割。

结论

在各向异性、取向不均匀的组织中对水分子扩散进行定量表征在临床上是可行的。这应能改善对各种灰质和白质疾病的神经放射学评估。

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