Brain Institute, University of Utah, Salt Lake City, UT, USA.
NMR Biomed. 2012 Nov;25(11):1245-52. doi: 10.1002/nbm.2795. Epub 2012 Mar 12.
(1) H MRS investigations have reported altered glutamatergic neurotransmission in a variety of psychiatric disorders. The unraveling of glutamate from glutamine resonances is crucial for the interpretation of these observations, although this remains a challenge at clinical static magnetic field strengths. Glutamate resolution can be improved through an approach known as echo time (TE) averaging, which involves the acquisition and subsequent averaging of multiple TE steps. The process of TE averaging retains the central component of the glutamate methylene multiplet at 2.35 ppm, with the simultaneous attenuation of overlapping phase-modulated coupled resonances of glutamine and N-acetylaspartate. We have developed a novel post-processing approach, termed phase-adjusted echo time (PATE) averaging, for the retrieval of glutamine signals from a TE-averaged (1) H MRS dataset. The method works by the application of an optimal TE-specific phase term, which is derived from spectral simulation, prior to averaging over TE space. The simulation procedures and preliminary in vivo spectra acquired from the human frontal lobe at 2.89 T are presented. Three metabolite normalization schemes were developed to evaluate the frontal lobe test-retest reliability for glutamine measurement in six subjects, and the resulting values were comparable with previous reports for within-subject (9-14%) and inter-subject (14-20%) measures. Using the acquisition parameters and TE range described, glutamine quantification is possible in approximately 10 min. The post-processing methods described can also be applied retrospectively to extract glutamine and glutamate levels from previously acquired TE-averaged (1) H MRS datasets.
(1) H MRS 研究报道在各种精神疾病中谷氨酸能神经传递发生改变。尽管在临床静态磁场强度下这仍然是一个挑战,但从谷氨酰胺共振中解开谷氨酸对于解释这些观察结果至关重要。通过称为回波时间 (TE) 平均的方法可以提高谷氨酸的分辨率,该方法涉及采集和随后平均多个 TE 步骤。TE 平均的过程保留了 2.35 ppm 处谷氨酸亚甲基多重峰的中心分量,同时衰减了谷氨酰胺和 N-乙酰天冬氨酸的重叠相位调制偶合共振。我们开发了一种新的后处理方法,称为相位校正回波时间 (PATE) 平均,用于从 TE 平均 (1) H MRS 数据集检索谷氨酰胺信号。该方法通过应用源自光谱模拟的最佳 TE 特定相位项来工作,然后在 TE 空间上进行平均。提出了模拟程序和在 2.89 T 下从人额叶获得的初步体内光谱。开发了三种代谢物归一化方案来评估六个受试者中测量谷氨酸的额叶测试 - 再测试可靠性,并且得到的值与先前关于个体内(9-14%)和个体间(14-20%)测量的报告相当。使用所描述的采集参数和 TE 范围,大约 10 分钟即可进行谷氨酰胺定量。所描述的后处理方法也可以 retrospective 地应用于从以前采集的 TE 平均 (1) H MRS 数据集中提取谷氨酰胺和谷氨酸水平。