Sodickson D K, Manning W J
Charles A. Dana Research Institute, Department of Medicine, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, Massachusetts 02215, USA.
Magn Reson Med. 1997 Oct;38(4):591-603. doi: 10.1002/mrm.1910380414.
SiMultaneous Acquisition of Spatial Harmonics (SMASH) is a new fast-imaging technique that increases MR image acquisition speed by an integer factor over existing fast-imaging methods, without significant sacrifices in spatial resolution or signal-to-noise ratio. Image acquisition time is reduced by exploiting spatial information inherent in the geometry of a surface coil array to substitute for some of the phase encoding usually produced by magnetic field gradients. This allows for partially parallel image acquisitions using many of the existing fast-imaging sequences. Unlike the data combination algorithms of prior proposals for parallel imaging, SMASH reconstruction involves a small set of MR signal combinations prior to Fourier transformation, which can be advantageous for artifact handling and practical implementation. A twofold savings in image acquisition time is demonstrated here using commercial phased array coils on two different MR-imaging systems. Larger time savings factors can be expected for appropriate coil designs.
空间谐波同时采集(SMASH)是一种新的快速成像技术,它能使磁共振成像(MR)的采集速度比现有的快速成像方法提高整数倍,而不会在空间分辨率或信噪比方面有显著牺牲。通过利用表面线圈阵列几何结构中固有的空间信息来替代通常由磁场梯度产生的部分相位编码,图像采集时间得以减少。这使得可以使用许多现有的快速成像序列进行部分并行图像采集。与先前并行成像提议的数据组合算法不同,SMASH重建在傅里叶变换之前涉及少量的MR信号组合,这对于伪影处理和实际应用可能是有利的。本文使用两个不同MR成像系统上的商业相控阵线圈展示了图像采集时间节省两倍的情况。对于合适的线圈设计,可以预期有更大的时间节省系数。