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MTR variations in normal adult brain structures using balanced steady-state free precession

机译:正常成人大脑结构的mTR变化使用平衡的稳态自由进动

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摘要

Introduction Magnetization transfer (MT) is sensitive to the macromolecular environment of water protons and thereby provides information not obtainable from conventional magnetic resonance imaging (MRI). Compared to standard methods, MT-sensitized balanced steady-state free precession (bSSFP) offers high-resolution images with significantly reduced acquisition times. In this study, high-resolution magnetization transfer ratio (MTR) images from normal appearing brain structures were acquired with bSSFP. Methods Twelve subjects were studied on a 1.5 T scanner. MTR values were calculated from MT images acquired in 3D with 1.3 mm isotropic resolution. The complete MT data set was acquired within less than 3.5 min. Forty-one brain structures of the white matter (WM) and gray matter (GM) were identified for each subject. Results MTR values were higher for WM than GM. In general, MTR values of the WM and GM structures were in good accordance with the literature. However, MTR values showed more homogenous values within WM and GM structures than previous studies. Conclusions MT-sensitized bSSFP provides isotropic high-resolution MTR images and hereby allows assessment of reliable MTR data in also very small brain structures in clinically feasible acquisition times and is thus a promising sequence for being widely used in the clinical routine. The present normative data can serve as a reference for the future characterization of brain pathologies.
机译:引言磁化转移(MT)对水质子的大分子环境敏感,因此可提供常规磁共振成像(MRI)无法获得的信息。与标准方法相比,MT敏感的平衡稳态无进动(bSSFP)可提供高分辨率图像,并大大缩短了采集时间。在这项研究中,使用bSSFP获取了来自正常出现的大脑结构的高分辨率磁化传递比(MTR)图像。方法在1.5 T扫描仪上对12名受试者进行研究。从以1.3 mm各向同性分辨率3D采集的MT图像计算MTR值。在不到3.5分钟的时间内获取了完整的MT数据集。为每个对象确定了41个脑白质(WM)和灰质(GM)的大脑结构。结果WM的MTR值高于GM。通常,WM和GM结构的MTR值与文献一致。然而,与以前的研究相比,WM和GM结构内的MTR值显示出更高的同质性。结论MT敏化的bSSFP提供了各向同性的高分辨率MTR图像,因此可以在临床可行的采集时间内评估非常小的大脑结构中可靠的MTR数据,因此是在临床常规中广泛应用的有希望的序列。当前的规范数据可以作为脑部病理学未来特征的参考。

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