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利用先验知识对体内短回波1H磁共振波谱进行定量分析。

The use of a priori knowledge to quantify short echo in vivo 1H MR spectra.

作者信息

Stanley J A, Drost D J, Williamson P C, Thompson R T

机构信息

Magnetic Resonance Spectroscopy Unit, Montreal Neurological Institute, Quebec, Canada.

出版信息

Magn Reson Med. 1995 Jul;34(1):17-24. doi: 10.1002/mrm.1910340105.

Abstract

In vivo 1H MR spectra of the prefrontal cortex acquired with the stimulated echo acquisition mode (STEAM) TE = 20 ms sequence were quantified to determine relative levels of cerebral metabolites. A priori knowledge of spectra from individual metabolites in aqueous solution was incorporated into a frequency domain quantification technique. The accuracy and precision of modeling these metabolites were investigated with simulated spectra of varying signal-to-noise ratios (SNRs) and relative metabolite levels. The efficacy of modeling in vivo data was tested by quantifying 10 repeated measures of two consecutively acquired in vivo spectra (an 8-cm3 volume of interest (VOI) and a 4-cm3 VOI positioned within the 8-cm3 VOI) on the same normal subject. The differences in levels of glutamate (Glu), phosphocreatine plus creatine (PCr+Cr) and choline-containing compounds (Cho(t)) between spectra from the 8- and 4-cm3 VOIs corresponded with the expected differences observed in the proportions of gray matter within the VOIs (estimated from 1H images). Correcting for the T1 and T2 relaxation, the estimated concentrations of N-acetylaspartate, PCr+Cr, Cho(t), Glu, and glutamine were consistent with previous in vivo and in vitro reports.

摘要

采用刺激回波采集模式(STEAM)、TE = 20 ms序列获取前额叶皮质的体内1H磁共振波谱,对其进行定量分析以确定脑代谢物的相对水平。将水溶液中单个代谢物的波谱先验知识纳入频域定量技术。通过对具有不同信噪比(SNR)和相对代谢物水平的模拟波谱进行研究,考察了这些代谢物建模的准确性和精密度。通过对同一正常受试者连续采集的两个体内波谱(一个8 cm³的感兴趣区(VOI)和位于8 cm³ VOI内的一个4 cm³ VOI)进行10次重复测量的定量分析,测试了体内数据建模的有效性。8 cm³和4 cm³ VOI波谱之间谷氨酸(Glu)、磷酸肌酸加肌酸(PCr+Cr)和含胆碱化合物(Cho(t))水平的差异与VOI内灰质比例的预期差异相符(根据1H图像估算)。校正T1和T2弛豫后,N-乙酰天门冬氨酸、PCr+Cr、Cho(t)、Glu和谷氨酰胺的估计浓度与先前的体内和体外报告一致。

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