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使用一种新型简单的频谱空间激发实现同时高选择性磁共振水脂成像。

Simultaneous highly selective MR water and fat imaging using a simple new type of spectral-spatial excitation.

作者信息

Schick F

机构信息

Department of Diagnostic Radiology, University of Tübingen, Germany.

出版信息

Magn Reson Med. 1998 Aug;40(2):194-202. doi: 10.1002/mrm.1910400205.

Abstract

In a recent contribution [MRM 38:269-274 (1997)], it was reported that an excitation by a series of sinc-shaped slice-selective RF pulses with binomial amplitude ratios and complete spin refocusing between consecutive pulses leads to water- or fat-selective images of high quality. A method for simultaneous water and fat imaging in multislice operation is presented based on the principle of alternated line scanning and linear superposition of several excitations. For example, a 1 - 3 - 3 - 1 pulse train with suitable interpulse delays results in a water-selective excitation, whereas a 1 - 3 - 3 - 1 train leads to a selective excitation of fat (transmitter frequency corresponds with the Larmor frequency of water protons). Phase cycling of the excitation (1 - 3 - 3 - 1 for the even line numbers in k-space, but 1 - 3 - 3 - 1 for the odd line numbers) causes a shift of n/2 lines in phase-encode direction for the fat signals in an n x m matrix. The principle of linear superposition explains why an excitation of 2 - 0 - 6 - 0 for the even lines and 0 - 6 - 0 - 2 for the odd lines results in a final image with unshifted water signals and shifted fat signals. Both water and fat portions are simultaneously exhibited and separated without any signal loss. Examples recorded by a gradient-echo sequence demonstrate the potential of the new technique that allows a reduction of up to 50% of measuring time compared with former frequency-selective imaging methods.

摘要

在最近的一篇论文[《磁共振成像》38:269 - 274 (1997)]中,据报道,一系列具有二项式幅度比且相邻脉冲间完全自旋重聚焦的 sinc 形层面选择射频脉冲激发,能产生高质量的水或脂肪选择性图像。基于交替线扫描原理和多次激发的线性叠加,提出了一种在多层操作中同时进行水和脂肪成像的方法。例如,具有合适脉冲间隔延迟的 1 - 3 - 3 - 1 脉冲序列会产生水选择性激发,而 1 - 3 - 3 - 1 序列会导致脂肪的选择性激发(发射机频率与水质子的拉莫尔频率对应)。激发的相位循环(k 空间中偶数行号为 1 - 3 - 3 - 1,但奇数行号为 1 - 3 - 3 - 1)会使 n×m 矩阵中脂肪信号在相位编码方向上产生 n/2 行的相位偏移。线性叠加原理解释了为什么偶数行采用 2 - 0 - 6 - 0 激发而奇数行采用 0 - 6 - 0 - 2 激发会得到水信号无偏移而脂肪信号有偏移的最终图像。水和脂肪部分能同时显示并分离,且无任何信号损失。由梯度回波序列记录的示例展示了这项新技术的潜力,与以前的频率选择成像方法相比,它可将测量时间减少多达 50%。

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