首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >1H metabolite relaxation times at 3.0 tesla: Measurements of T1 and T2 values in normal brain and determination of regional differences in transverse relaxation.
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1H metabolite relaxation times at 3.0 tesla: Measurements of T1 and T2 values in normal brain and determination of regional differences in transverse relaxation.

机译:1H代谢物在3.0特斯拉下的弛豫时间:正常大脑中T1和T2值的测量以及横向弛豫的区域差异的确定。

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PURPOSE: To measure (1)H relaxation times of cerebral metabolites at 3 T and to investigate regional variations within the brain. MATERIALS AND METHODS: Investigations were performed on a 3.0-T clinical whole-body magnetic resonance (MR) system. T2 relaxation times of N-acetyl aspartate (NAA), total creatine (tCr), and choline compounds (Cho) were measured in six brain regions of 42 healthy subjects. T1 relaxation times of these metabolites and of myo-inositol (Ins) were determined in occipital white matter (WM), the frontal lobe, and the motor cortex of 10 subjects. RESULTS: T2 values of all metabolites were markedly reduced with respect to 1.5 T in all investigated regions. T2 of NAA was significantly (P < 0.001) shorter in the motor cortex (247 +/- 13 msec) than in occipital WM (301 +/- 18 msec). T2 of the tCr methyl resonance showed a corresponding yet less pronounced decrease (162 +/- 16 msec vs. 178 +/- 9 msec, P = 0.021). Even lower T2 values for all metabolites were measured in the basal ganglia. Metabolite T1 relaxation times at 3.0 T were not significantly different from the values at 1.5 T. CONCLUSION: Transverse relaxation times of the investigated cerebral metabolites exhibit an inverse proportionality to magnetic field strength, and especially T2 of NAA shows distinct regional variations at 3 T. These can be attributed to differences in relative WM/gray matter (GM) contents and to local paramagnetism. J. Magn. Reson. Imaging 2004;19:537-545.
机译:目的:测量3 T时大脑代谢物的(1)H弛豫时间,并研究大脑内的区域变化。材料与方法:研究是在3.0吨临床全身磁共振(MR)系统上进行的。在42位健康受试者的六个大脑区域中测量了N-乙酰天门冬氨酸(NAA),总肌酸(tCr)和胆碱化合物(Cho)的T2弛豫时间。确定了这些代谢物和肌醇(Ins)的T1弛豫时间,其测定了10位受试者的枕部白质(WM),额叶和运动皮层。结果:所有研究区域中所有代谢物的T2值均相对于1.5 T显着降低。运动皮质(247 +/- 13毫秒)中NAA的T2明显短于枕骨WM(301 +/- 18毫秒)(P <0.001)。 tCr甲基共振的T2表现出相应的下降幅度却不太明显(162 +/- 16毫秒与178 +/- 9毫秒,P = 0.021)。在基底神经节中,所有代谢物的T2值甚至更低。结论:在3.0 T时,代谢物T1的弛豫时间与在1.5 T时的弛豫时间没有显着差异。结论:研究的脑代谢物的横向弛豫时间与磁场强度成反比,特别是NAA的T2在3 T时表现出明显的区域变化。这些可以归因于相对WM /灰质(GM)含量的差异和局部顺磁性。 J.Magn。雷森成像2004; 19:537-545。

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