Collapsed fat navigators for brain 3D rigid body motion

被引:22
作者
Engstrom, Mathias [1 ]
Martensson, Magnus
Avventi, Enrico
Norbeck, Ola
Skare, Stefan
机构
[1] Karolinska Univ Hosp, Dept Neuroradiol, SE-17176 Stockholm, Sweden
关键词
Motion correction; Fat navigator; Prospective correction; Chemical saturation;
D O I
10.1016/j.mri.2015.06.014
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Purpose: To acquire high-resolution 3D multi-slab echo planar imaging data without motion artifacts, using collapsed fat navigators. Methods: A fat navigator module (collapsed FatNav) was added to a diffusion-weighted 3D multi-slab echo planar imaging (DW3D-MS EPI) sequence, comprising three orthogonal echo planar imaging readouts to track rigid body head motion in the image domain and performing prospective motion correction. The stability, resolution and accuracy of the navigator were investigated on phantoms and healthy volunteers. Results: The experiments on phantoms and volunteers show that the navigator, depicting projections of the subcutaneous fat in of the head, is capable of correcting for head motion with insignificant bias compared to motion estimates derived from the water-signaling DWI images. Despite that this projection technique implies a non-sparse image appearance, collapsed FatNav data could be highly accelerated with parallel imaging, allowing three orthogonal 2D Ell, readouts in about 6 ms. Conclusion: By utilizing signal from the leading fat saturation RF pulse of the diffusion sequence, only the readout portion of the navigator needs to be added, resulting in a scan time penalty of only about 5%. Motion can be detected and corrected for with a 5-10 Hz update frequency when combined with a sequence like the DW 3D-MS EPI. (C) 2015 Elsevier Inc. All rights reserved.
引用
收藏
页码:984 / 991
页数:8
相关论文
共 17 条
[1]  
Andre JB, 2014, P 22 ANN M ISMRM MIL, P1607
[2]  
Bhat H, 2014, P ISMRM SCI WORKSH M
[3]   Diffusion-Weighted 3D Multislab Echo Planar Imaging for High Signal-to-Noise Ratio Efficiency and Isotropic Image Resolution [J].
Engstroem, Mathias ;
Skare, Stefan .
MAGNETIC RESONANCE IN MEDICINE, 2013, 70 (06) :1507-1514
[4]  
Engstrom M, 2013, P 21 ANN M ISMRM SAL, P2579
[5]   ORBITAL NAVIGATOR ECHOES FOR MOTION MEASUREMENTS IN MAGNETIC-RESONANCE-IMAGING [J].
FU, ZW ;
WANG, Y ;
GRIMM, RC ;
ROSSMAN, PJ ;
FELMLEE, JP ;
RIEDERER, SJ ;
EHMAN, RL .
MAGNETIC RESONANCE IN MEDICINE, 1995, 34 (05) :746-753
[6]  
Gallichan D, 2014, OVERPROOF GRAPPA EXP, P4345
[7]   Generalized Autocalibrating Partially Parallel Acquisitions (GRAPPA) [J].
Griswold, MA ;
Jakob, PM ;
Heidemann, RM ;
Nittka, M ;
Jellus, V ;
Wang, JM ;
Kiefer, B ;
Haase, A .
MAGNETIC RESONANCE IN MEDICINE, 2002, 47 (06) :1202-1210
[8]  
Haeberlin M, 2014, MAGN RESON MED
[9]   Real-Time Motion and B0 Corrected Single Voxel Spectroscopy Using Volumetric Navigators [J].
Hess, Aaron T. ;
Tisdall, M. Dylan ;
Andronesi, Ovidiu C. ;
Meintjes, Ernesta M. ;
van der Kouwe, Andre J. W. .
MAGNETIC RESONANCE IN MEDICINE, 2011, 66 (02) :314-323
[10]   Diffusion tensor imaging (DTI) with retrospective motion correction for large-scale pediatric imaging [J].
Holdsworth, Samantha J. ;
Aksoy, Murat ;
Newbould, Rexford D. ;
Yeom, Kristen ;
Van, Anh T. ;
Ooi, Melvyn B. ;
Barnes, Patrick D. ;
Bammer, Roland ;
Skare, Stefan .
JOURNAL OF MAGNETIC RESONANCE IMAGING, 2012, 36 (04) :961-971