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外侧胶质界膜的磁共振成像特征:一项7T研究。

MRI characteristics of the glia limitans externa: A 7T study.

作者信息

Suzuki Kiyotaka, Yamada Kenichi, Nakada Kazunori, Suzuki Yuji, Watanabe Masaki, Kwee Ingrid L, Nakada Tsutomu

机构信息

Center for Integrated Human Brain Science, Brain Research Institute, University of Niigata, Niigata, Japan.

Center for Integrated Human Brain Science, Brain Research Institute, University of Niigata, Niigata, Japan; Department of Neurology, University of California, Davis, USA.

出版信息

Magn Reson Imaging. 2017 Dec;44:140-145. doi: 10.1016/j.mri.2017.08.012. Epub 2017 Sep 10.

Abstract

PURPOSE

To perform a systematic analysis of the intrinsic contrast parameters of the FLAIR hyperintense rim (FHR), a thin layer of high intensity covering the entire surface of the cerebral cortex detected on fluid-attenuated inversion recovery (FLAIR) sequence T weighted imaging performed on a 7T system, in an attempt to identify its anatomical correlate.

METHODS

Fast spin echo inversion recovery (FSE-IR) and cardiac-gated fast spin echo (FSE) images were obtained with defined parameters in eight normal volunteers on a 7 T MRI system to determine T2 and proton density, T characteristics. K-means clustering analysis of parameter sets was performed using MATLAB version R2015b for the purpose of identifying the cluster reflecting FHR. The results were subsequently confirmed by independent component analysis (ICA) based on T behavior on FSE-IR using a MATLAB script of FastICA algorithm.

RESULTS

The structure giving rise to FHR was found to have a unique combination of intrinsic contrast parameters of low proton density, long T, and disproportionally short T. The findings are in strong agreement with the functional and structural specifics of the glia limitans externa (GLE), a structure composed of snuggled endfeet of astrocytes containing abundant aquaporin-4 (AQP-4), the main water channel of the brain.

CONCLUSION

Intrinsic contrast parameters of FHR reflect structural and functional specifics of the GLE, and their values are highly dependent on the physiologic functionality of AQP-4. Microscopic imaging on a 7T system and analysis of GLE contrast parameters can be developed into a method for evaluating AQP-4 functionality.

摘要

目的

对液体衰减反转恢复(FLAIR)高信号边缘(FHR)的内在对比参数进行系统分析。FHR是在7T系统上进行的FLAIR序列T加权成像中检测到的覆盖大脑皮质整个表面的一层高强度薄层,旨在确定其解剖学对应结构。

方法

在7T MRI系统上,对8名正常志愿者采用特定参数获取快速自旋回波反转恢复(FSE-IR)和心脏门控快速自旋回波(FSE)图像,以确定T2和质子密度、T特性。使用MATLAB R2015b版本对参数集进行K均值聚类分析,以识别反映FHR的聚类。随后基于FSE-IR上的T行为,使用FastICA算法的MATLAB脚本通过独立成分分析(ICA)对结果进行确认。

结果

发现产生FHR的结构具有低质子密度、长T和不成比例的短T的独特内在对比参数组合。这些发现与外胶质界膜(GLE)的功能和结构特征高度一致,GLE是一种由含有丰富水通道蛋白4(AQP-4)(大脑的主要水通道)的星形胶质细胞紧密排列的终足组成的结构。

结论

FHR的内在对比参数反映了GLE的结构和功能特征,其值高度依赖于AQP-4的生理功能。7T系统上的微观成像和GLE对比参数分析可发展成为一种评估AQP-4功能的方法。

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