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WET,一种用于体内局部1H核磁共振波谱的对T1和B1不敏感的水抑制方法。

WET, a T1- and B1-insensitive water-suppression method for in vivo localized 1H NMR spectroscopy.

作者信息

Ogg R J, Kingsley P B, Taylor J S

机构信息

Department of Diagnostic Imaging, St. Jude Children's Research Hospital, Memphis, Tennessee 38101.

出版信息

J Magn Reson B. 1994 May;104(1):1-10. doi: 10.1006/jmrb.1994.1048.

Abstract

Suppression of the water signal during 1H magnetic resonance spectroscopy by repeated sequences of a frequency-selective radiofrequency pulse and a gradient dephasing pulse requires nulling of the longitudinal component of the water magnetization and is therefore affected by T1 relaxation, RF-pulse flip angles (which depend on B1), and sequence timing. In in vivo applications, T1 and B1 inhomogeneity within the sample may cause spatially inhomogeneous water suppression. An improved water-suppression technique called WET (water suppression enhanced through T1 effects), developed from a Bloch equation analysis of the longitudinal magnetization over the T1 and B1 ranges of interest, achieves T1- and B1-insensitive suppression with four RF pulses, each having a numerically optimized flip angle. Once flip angles have been optimized for a given sequence, time-consuming flip-angle adjustments during clinical examinations are eliminated. This water-suppression technique was characterized with respect to T1 variations, B1 variations, off-resonance effects, and partial saturation effects and was compared to similar techniques. Effective water suppression has been achieved with this new technique in single-voxel spectroscopy examinations of more than 50 brain tumor patients at 1.5 T.

摘要

在氢质子磁共振波谱分析中,通过频率选择性射频脉冲和梯度去相位脉冲的重复序列抑制水信号,需要使水磁化强度的纵向分量归零,因此会受到T1弛豫、射频脉冲翻转角(取决于B1)和序列定时的影响。在体内应用中,样本内的T1和B1不均匀性可能导致空间上不均匀的水抑制。一种名为WET(通过T1效应增强水抑制)的改进水抑制技术,是通过对感兴趣的T1和B1范围内的纵向磁化强度进行布洛赫方程分析而开发的,它通过四个射频脉冲实现了对T1和B1不敏感的抑制,每个脉冲都有数值优化的翻转角。一旦针对给定序列优化了翻转角,临床检查期间耗时的翻转角调整就被消除了。对这种水抑制技术在T1变化、B1变化、失谐效应和部分饱和效应方面进行了表征,并与类似技术进行了比较。在1.5T下对50多名脑肿瘤患者进行的单体素质谱检查中,使用这种新技术已实现了有效的水抑制。

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