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使用3特斯拉磁共振波谱对γ-氨基丁酸区域差异进行无创评估。

Noninvasive evaluation of the regional variations of GABA using magnetic resonance spectroscopy at 3 Tesla.

作者信息

Durst Christopher R, Michael Navin, Tustison Nicholas J, Patrie James T, Raghavan Prashant, Wintermark Max, Sendhil Velan S

机构信息

Department of Radiology and Medical Imaging, University of Virginia, Charlottesville, VA, USA.

Singapore Institute for Clinical Sciences, Agency for Science, Technology and Research, Singapore.

出版信息

Magn Reson Imaging. 2015 Jun;33(5):611-7. doi: 10.1016/j.mri.2015.02.015. Epub 2015 Feb 20.

Abstract

PURPOSE

Rapid regional fluctuations in GABA may result in inhomogeneous concentrations throughout the brain parenchyma. The goal of this study is to provide further insight into the natural distribution of GABA throughout the brain and thus determine if a surrogate site may be used for spectroscopy when evaluating motor diseases, neurological disorders, or psychiatric dysfunction.

MATERIALS AND METHODS

In this prospective study, eight healthy volunteers underwent spectroscopic evaluation of the frontal lobe, occipital lobe, lateral temporal lobe, basal ganglia, and both hippocampi using a spin echo variant of a J-difference editing method. Knowledge of the relative peak intensities of the macromolecule peaks at 3ppm and 0.9ppm was used to correct the contribution of co-edited macromolecules to the GABA peak at 3ppm. The GABA values were internally referenced to NAA. Linear regression was used to normalize the effect of regional tissue-fraction variation on the GABA/NAA values. A one-way ANOVA was performed with Tukey's multiple comparison test to compare the normalized GABA/NAA values in each pair of locations.

RESULTS

After accounting for the macromolecule contribution to the GABA signal and correction for tissue fraction variation, the normalized GABA/NAA ratios differ significantly between the six brain locations (p<0.001). Pairwise comparisons of the corrected normalized GABA/NAA ratios show statistically significant variation between the frontal lobe and the basal ganglia, frontal and lateral temporal lobes, and frontal lobe and right hippocampus. Variations in the normalized GABA/NAA ratios trend toward significance between the frontal lobe and left hippocampus, occipital lobe and the frontal lobe, occipital lobe and basal ganglia, and occipital lobe and right hippocampus.

CONCLUSION

Our study suggests that GABA concentration is inhomogeneous throughout the parenchyma. Studies evaluating the role of GABA must carefully consider voxel placement when incorporating spectroscopy.

摘要

目的

γ-氨基丁酸(GABA)在局部区域的快速波动可能导致整个脑实质内浓度不均匀。本研究的目的是进一步深入了解GABA在全脑的自然分布情况,从而确定在评估运动疾病、神经障碍或精神功能障碍时,是否可以使用替代部位进行光谱分析。

材料与方法

在这项前瞻性研究中,8名健康志愿者采用J-差异编辑方法的自旋回波变体对额叶、枕叶、颞叶外侧、基底神经节和双侧海马进行了光谱评估。利用3ppm和0.9ppm处大分子峰的相对峰强度知识来校正共同编辑的大分子对3ppm处GABA峰的贡献。GABA值以内标物N-乙酰天门冬氨酸(NAA)为参照。采用线性回归来归一化区域组织分数变化对GABA/NAA值的影响。进行单因素方差分析,并采用Tukey多重比较检验来比较各对位置的归一化GABA/NAA值。

结果

在考虑大分子对GABA信号的贡献并校正组织分数变化后,六个脑区的归一化GABA/NAA比值存在显著差异(p<0.001)。校正后的归一化GABA/NAA比值的两两比较显示,额叶与基底神经节、额叶与颞叶外侧以及额叶与右侧海马之间存在统计学显著差异。额叶与左侧海马、枕叶与额叶、枕叶与基底神经节以及枕叶与右侧海马之间的归一化GABA/NAA比值变化趋向于显著。

结论

我们的研究表明,GABA浓度在整个脑实质内是不均匀的。在纳入光谱分析评估GABA的作用时,研究必须仔细考虑体素的放置。

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