Department of Radiology, University of Minnesota Medical School, Minneapolis, MN 55455, USA.
Magn Reson Med. 2012 Apr;67(4):891-7. doi: 10.1002/mrm.23080. Epub 2011 Jul 11.
Accurate quantification of (1) H NMR spectra often requires knowledge of the relaxation times to correct for signal losses due to relaxation and saturation. In human brain, T(2) values for singlets such as N-acetylaspartate, creatine, and choline have been reported, but few T(2) values are available for J-coupled spin systems. The purpose of this study was to measure the T(2) relaxation times of J-coupled metabolites in the human occipital lobe using the LASER sequence. Spectra were acquired at multiple echo times and were analyzed with an LCModel using basis sets simulated at each echo time. Separate basis spectra were used for resonances of protons belonging to the same molecule but having very different T(2) values (e.g., two separate basis spectra were used for the singlet and multiplet signal in N-acetylaspartate). The T(2) values for the N-acetylaspartate multiplet (149 ± 12 ms), glutamate (125 ± 10 ms), myo-inositol (139 ± 20 ms), and taurine (196 ± 28 ms) were successfully measured in the human visual cortex at 4 T. These measured T(2) relaxation times have enabled the accurate and absolute quantification of cerebral metabolites at longer echo times.
准确地定量(1)H NMR 谱通常需要了解弛豫时间,以校正由于弛豫和饱和导致的信号损失。在人类大脑中,已报道了诸如 N-乙酰天冬氨酸、肌酸和胆碱等单峰的 T(2)值,但很少有 J 耦合自旋系统的 T(2)值可用。本研究的目的是使用 LASER 序列测量人枕叶中 J 耦合代谢物的 T(2)弛豫时间。在多个回波时间处采集光谱,并使用在每个回波时间处模拟的 LCModel 进行分析。对于属于同一分子但 T(2)值非常不同的质子(例如,N-乙酰天冬氨酸中的单峰和多重峰信号使用两个单独的基础光谱),使用单独的基础光谱进行分析。在 4 T 下,成功测量了人视觉皮层中 N-乙酰天冬氨酸多重峰(149±12 ms)、谷氨酸(125±10 ms)、肌醇(139±20 ms)和牛磺酸(196±28 ms)的 T(2)值。这些测量的 T(2)弛豫时间使在更长回波时间下对脑代谢物进行准确和绝对定量成为可能。