Lu Aiming, Grist Thomas M, Block Walter F
Department of Biomedical Engineering, University of Wisconsin, Madison, WI 53792-3252, USA.
Magn Reson Med. 2005 Nov;54(5):1051-7. doi: 10.1002/mrm.20715.
Phase detection in fully refocused SSFP imaging has recently allowed fat/water separation without preparing the magnetization or using multiple acquisitions. Instead, it exploits the phase difference between fat and water at an echo time at the midpoint of the TR. To minimize the TR for improved robustness to B0 inhomogeneity, a 3D projection acquisition collecting two half echoes at the beginning and end of each excitation was previously implemented. Since echoes are not formed at the midpoint of the TR, this method still requires two passes of k-space for fat/water separation. A new method is presented to linearly combine the half echoes to separate fat and water in a single acquisition. Separation using phase detection provides superior contrast between fat and water voxels. Results from high resolution angiography and musculoskeletal studies with improved robustness to inhomogeneity and a 50% scan time reduction compared to the two pass method are presented.
在完全重聚焦的稳态自由进动(SSFP)成像中,相位检测最近使得无需准备磁化或使用多次采集就能实现脂肪/水分离。相反,它利用了在重复时间(TR)中点的回波时间处脂肪和水之间的相位差。为了最小化TR以提高对B0不均匀性的鲁棒性,先前实施了一种在每次激发开始和结束时收集两个半回波的三维投影采集。由于在TR中点不形成回波,这种方法仍然需要两次通过k空间来进行脂肪/水分离。本文提出了一种新方法,通过线性组合半回波在单次采集中分离脂肪和水。使用相位检测进行分离可在脂肪和水体素之间提供卓越的对比度。本文展示了高分辨率血管造影和肌肉骨骼研究的结果,与两次通过方法相比,对不均匀性的鲁棒性提高,扫描时间减少了50%。