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利用带梯度去相的射频波段选择性反转(BASING)改善用于三维点分辨表面线圈光谱成像(3D PRESS CSI)的水和脂质抑制。

Improved water and lipid suppression for 3D PRESS CSI using RF band selective inversion with gradient dephasing (BASING).

作者信息

Star-Lack J, Nelson S J, Kurhanewicz J, Huang L R, Vigneron D B

机构信息

Magnetic Resonance Science Center, Department of Radiology, University of California, San Francisco 94305, USA.

出版信息

Magn Reson Med. 1997 Aug;38(2):311-21. doi: 10.1002/mrm.1910380222.

Abstract

A T1 insensitive solvent suppression technique-band selective inversion with gradient dephasing (BASING)-was developed to suppress water and lipids for 1H magnetic resonance spectroscopy (MRS). BASING, which consists of a frequency selective RF inversion pulse surrounded by spoiler gradient pulses of opposite signs, was used to dephase stopband resonances and minimally impact passband metabolites. Passband phase linearity was achieved with a dual BASING scheme. Using the Shinnar-Le Roux algorithm, a highpass filter was designed to suppress water and rephase the lactate methyl doublet independently of TE, and water/lipid bandstop filters were designed for the brain and prostate. Phantom and in vivo experimental 3D PRESS CSI data were acquired at 1.5 T to compare BASING with CHESS and STIR suppression. With BASING, the measured suppression factor was over 100 times higher than with CHESS or STIR causing baseline distortions to be removed. It was shown that BASING can be incorporated into a variety of sequences to offer improved suppression in the presence of B1 and T1 inhomogeneites.

摘要

为了在氢磁共振波谱(MRS)中抑制水和脂质信号,开发了一种T1不敏感溶剂抑制技术——带梯度去相位的带选择性反转(BASING)。BASING由一个频率选择性射频反转脉冲和两侧符号相反的扰相梯度脉冲组成,用于使阻带共振失相,并将通带代谢物的影响降至最低。采用双BASING方案实现了通带相位线性。利用Shinnar-Le Roux算法,设计了一个高通滤波器来抑制水信号,并独立于回波时间(TE)对乳酸甲基双峰进行重相,还为脑和前列腺设计了水/脂质带阻滤波器。在1.5T场强下采集了体模和体内实验的三维激励回波采集模式(3D PRESS)磁共振波谱成像(CSI)数据,以比较BASING与化学位移选择性激发(CHESS)和短TI反转恢复(STIR)抑制技术的效果。使用BASING时,测得的抑制因子比CHESS或STIR高出100倍以上,从而消除了基线失真。结果表明,BASING可以整合到各种序列中,在存在B1和T1不均匀性的情况下提供更好的抑制效果。

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