Schick F, Forster J, Machann J, Kuntz R, Claussen C D
Department of Diagnostic Radiology, Institute of Physics, University of Tübingen, Germany.
J Magn Reson Imaging. 1998 Jul-Aug;8(4):960-7. doi: 10.1002/jmri.1880080427.
Echo-planar imaging (EPI) is markedly susceptible to B0 field distortions and to frequency differences caused by chemical shift, because the phase of the signals is accumulating during the acquisition train. Thus, only water proton signals are usually recorded after frequency-selective suppression of the fat portions of magnetization. Otherwise, a shifted signal frequency from fat results in ghosting artifacts. In this article, a technique is presented working with spatial-spectral excitation for highly selective water or fat EPI. The proposed method allows recording in multislice operation on EPI scanners without irregular gradient or RF pulse shapes. Examples of gradient-echo and spin-echo EPI using spatial-spectral excitation by series of two to eight single slice-selective RF pulses are demonstrated. The method is not sensitive to misadjustments or inhomogeneities of the B1 field, but sufficient homogeneity of the static magnetic field B0 is required. Especially the quality of diffusion-weighted echo-planar images can be markedly improved by the new technique compared to conventional EPI, because artifacts from undesired chemical shift components are completely avoided.
回波平面成像(EPI)对B0场畸变和化学位移引起的频率差异非常敏感,因为信号相位在采集序列中不断累积。因此,通常在对磁化的脂肪部分进行频率选择性抑制后,仅记录水质子信号。否则,来自脂肪的信号频率偏移会导致重影伪影。在本文中,提出了一种利用空间频谱激发实现高选择性水或脂肪EPI的技术。所提出的方法允许在EPI扫描仪上进行多层操作记录,而无需不规则的梯度或射频脉冲形状。展示了使用由两到八个单层面选择射频脉冲组成的序列进行空间频谱激发的梯度回波和自旋回波EPI的示例。该方法对B1场的失调或不均匀性不敏感,但需要静态磁场B0具有足够的均匀性。特别是,与传统EPI相比,新技术可以显著提高扩散加权回波平面图像的质量,因为完全避免了来自不需要的化学位移成分的伪影。