Hennel Franciszek, Buehrer Martin, von Deuster Constantin, Seuven Aline, Pruessmann Klaas P
Institute for Biomedical Engineering, University of Zurich and ETH Zurich, Zurich, Switzerland.
Magn Reson Med. 2016 Sep;76(3):873-9. doi: 10.1002/mrm.25915. Epub 2015 Aug 29.
Sensitivity encoding (SENSE) reconstruction of multiband echo planar imaging (EPI) may cause artifacts when simultaneously excited slices require different phase correction to remove the EPI-specific ghost shifted by half of the matrix size (N). We propose a simplified solution of this problem that combines SENSE unfolding with the EPI phase correction in the image domain.
Slice-dependent phase correction was included in equations linking folded slice images reconstructed separately from even and odd echoes of all receivers with the true images of each slice. Compared with the previously proposed combination of ghost suppression with SENSE based on a direct image fit to echo data, our method reduces the problem complexity by N(2) /4. It was applied to reconstruct images of phantoms and human brain.
The proposed method tolerates high differences of phase correction between slices, which may result, e.g., from anisotropic gradient delay. It suppresses artifacts better than standard SENSE even when the latter is repeated with the ghost correction targeting each of the slices and works significantly faster than the direct fit version of ghost-correcting SENSE.
With the proposed modification SENSE allows a rapid separation of slices simultaneously acquired with EPI even when the phase correction needed for each slice is different. Magn Reson Med 76:873-879, 2016. © 2015 Wiley Periodicals, Inc.
当同时激发的层面需要不同的相位校正以消除由矩阵大小(N)的一半所偏移的EPI特异性鬼影时,多波段回波平面成像(EPI)的灵敏度编码(SENSE)重建可能会产生伪影。我们提出了一种解决该问题的简化方案,即将SENSE展开与图像域中的EPI相位校正相结合。
将层面依赖的相位校正纳入到将从所有接收器的偶数和奇数回波分别重建的折叠层面图像与每个层面的真实图像相联系的方程中。与先前提出的基于对回波数据的直接图像拟合将鬼影抑制与SENSE相结合的方法相比,我们的方法将问题复杂度降低了N(2)/4。该方法被应用于重建体模和人脑的图像。
所提出的方法能够容忍层面之间相位校正的高度差异,这种差异可能例如由各向异性梯度延迟导致。即使在标准SENSE针对每个层面进行鬼影校正重复使用时,该方法抑制伪影的效果也优于标准SENSE,并且比鬼影校正SENSE的直接拟合版本工作速度显著更快。
通过所提出的改进,即使每个层面所需的相位校正不同,SENSE也能够快速分离与EPI同时采集的层面。《磁共振医学》76:873 - 879, 2016。© 2015威利期刊公司。