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Microscopic and compartment shape anisotropies in gray and white matter revealed by angular bipolar double-PFG MR

机译:角双极双PFG MR揭示的灰色和白色物质的微观和隔室形状各向异性

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Diffusion MR has become one of the most important tools for studying neuronal tissues. Conventional single-pulsed-field-gradient methodologies are capable of faithfully depicting diffusion anisotropy in coherently ordered structures, providing important microstructural information; however, it is extremely difficult to characterize randomly oriented compartments using conventional single-pulsed-field-gradient MR. The angular double-pulsed-field- gradient methodology can potentially overcome the limitations of conventional single-pulsed-field-gradient MR, and offer microstructural information on microscopic anisotropy and compartment shape anisotropy even when anisotropic compartments are completely randomly oriented. Here, we used angular double-pulsed-field-gradient MR at different mixing times to study isolated gray matter and white matter, respectively, and the results are compared with phantoms in which compartments are randomly oriented and coherently organized, respectively. We find that angular bipolar double-pulsed-field-gradient MR offers novel microstructural information, especially in the gray matter, depicting the local microscopic and compartment shape anisotropies present. Furthermore, direct comparison between the angular dependencies arising from white and gray matter at different mixing times reveals signatures for these tissues that are based on compartment shape anisotropy. These findings demonstrate that microstructural information can indeed be obtained from gray matter, and therefore, angular double-pulsed-field-gradient MR is promising for future application in MRI of the central-nervous-system. Magn Reson Med, 2011.
机译:扩散MR已成为研究神经元组织的最重要工具之一。常规的单脉冲场梯度方法能够如实描述相干结构中的扩散各向异性,从而提供重要的微观结构信息。但是,使用常规的单脉冲场梯度MR来表征随机取向的隔室非常困难。角双脉冲场梯度方法可以潜在地克服常规单脉冲场梯度MR的局限性,并且即使各向异性隔室是完全随机定向的,也可以提供有关微观各向异性和隔室形状各向异性的微观结构信息。在这里,我们使用角双脉冲场梯度MR在不同的混合时间分别研究孤立的灰质和白质,并将结果与​​分别将隔室随机定向和相干组织的体模进行比较。我们发现,角双极双脉冲场梯度MR提供了新颖的微观结构信息,特别是在灰质中,描绘了存在的局部微观和隔室形状各向异性。此外,在不同混合时间下由白质和灰质引起的角度依赖性之间的直接比较揭示了这些基于隔室形状各向异性的组织的特征。这些发现表明,微结构信息确实可以从灰质中获得,因此,角双脉冲场梯度MR有望在中枢神经系统MRI中得到进一步应用。 Magn Reson Med,2011年。

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