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3.0特斯拉下的1H代谢物弛豫时间:正常脑内T1和T2值的测量以及横向弛豫区域差异的测定

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.

作者信息

Träber Frank, Block Wolfgang, Lamerichs Rolf, Gieseke Jürgen, Schild Hans H

机构信息

Department of Radiology, University of Bonn, Bonn, Germany.

出版信息

J Magn Reson Imaging. 2004 May;19(5):537-45. doi: 10.1002/jmri.20053.

Abstract

PURPOSE

To measure 1H 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.

摘要

目的

测量3T场强下脑代谢物的1H弛豫时间,并研究脑内的区域差异。

材料与方法

在一台3.0-T临床全身磁共振(MR)系统上进行研究。在42名健康受试者的六个脑区测量了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。在10名受试者的枕叶白质(WM)、额叶和运动皮层测定了这些代谢物以及肌醇(Ins)的T1弛豫时间。

结果

在所有研究区域,所有代谢物的T2值相对于1.5T均显著降低。运动皮层中NAA的T2(247±13毫秒)显著短于枕叶白质(301±18毫秒)(P<0.001)。tCr甲基共振的T2呈现相应但不太明显的降低(分别为162±16毫秒和178±9毫秒,P = 0.021)。在基底节中测得所有代谢物的T2值更低。3.0T时代谢物的T1弛豫时间与1.5T时的值无显著差异。

结论

所研究脑代谢物的横向弛豫时间与磁场强度呈反比,尤其是NAA的T2在3T时显示出明显的区域差异。这些差异可归因于相对白质/灰质(GM)含量的差异以及局部顺磁性。

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