Direct Coronary Motion Extraction from a 2D Fat Image Navigator for Prospectively Gated Coronary MR Angiography

被引:22
|
作者
Kawaji, Keigo [1 ,2 ]
Spincemaille, Pascal [2 ]
Nguyen, Thanh D. [2 ]
Thimmappa, Nandadeepa [2 ]
Cooper, Mitchell A. [1 ,2 ]
Prince, Martin R. [2 ]
Wang, Yi [1 ,2 ]
机构
[1] Cornell Univ, Dept Biomed Engn, Ithaca, NY USA
[2] Weill Cornell Med Coll, Dept Radiol, New York, NY USA
关键词
coronary MR angiography; cardiac fat navigator; 2D navigator; real-time motion extraction; respiratory gating; MAGNETIC-RESONANCE ANGIOGRAPHY; RESPIRATORY MOTION; SELECTIVE EXCITATION; ARTERY MOTION; RADIAL SSFP; HEART; RECONSTRUCTION; ACQUISITION; EFFICIENCY; RESOLUTION;
D O I
10.1002/mrm.24698
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
PurposeDirect 2D tracking of cardiac motion may provide superior respiratory navigator gating for coronary magnetic resonance angiography compared to conventional liver-diaphragm navigators. However, additional 2D processing for motion extraction is unsuitable for real-time prospective gating. In this work, a 2D fat-selective image navigator, which delineates the epicardial fat surrounding coronary arteries, is developed to directly monitor epicardial fat motion at every heartbeat in real-time for prospective gating. MethodsThe proposed navigator is incorporated into a real-time interactive software that allows rapid setup and efficient motion extraction, and runs on standard clinical hardware without any additional dedicated components for processing. The proposed 2D cardiac fat image navigator was compared with the conventional 1D diaphragm navigator in free-breathing b-SSFP coronary MRAs in 12 healthy volunteers at 1.5T. ResultsReal-time motion extraction from 2D cardiac fat navigator images was feasible within 20 ms, enabling successful prospectively gated coronary magnetic resonance angiographies in all subjects. Compared to 1D diaphragmatic navigator, 2D fat image navigator reduced scan time by 38% (P<0.0005), and significantly improved vessel sharpness, myocardial suppression, and image quality (P<0.05). ConclusionThis demonstrates the feasibility of a 3D SSFP coronary magnetic resonance angiography sequence using a 2D epicardial fat image as a navigator for real-time prospective motion tracking. Magn Reson Med 71:599-607, 2014. (c) 2013 Wiley Periodicals, Inc.
引用
收藏
页码:599 / 607
页数:9
相关论文
共 50 条
  • [31] Submillimeter 3D coronary MR angiography with real-time navigator correction in 107 patients with suspected coronary artery disease
    Sommer, T
    Hofer, U
    Hackenbroch, M
    Meyer, C
    Flacke, S
    Schmiedel, A
    Schmitz, C
    Thiemann, K
    Omran, H
    Schild, H
    ROFO-FORTSCHRITTE AUF DEM GEBIET DER RONTGENSTRAHLEN UND DER BILDGEBENDEN VERFAHREN, 2002, 174 (04): : 459 - 466
  • [32] Motion corrected water/fat whole-heart coronary MR angiography with 100% respiratory efficiency
    Munoz, Camila
    Cruz, Gastao
    Neji, Radhouene
    Botnar, Rene M.
    Prieto, Claudia
    MAGNETIC RESONANCE IN MEDICINE, 2019, 82 (02) : 732 - 742
  • [33] The extraction of self-motion information from 2D image sequences
    Perrone, JA
    AUSTRALIAN JOURNAL OF PSYCHOLOGY, 2004, 56 : 131 - 132
  • [34] Comparison of breath-hold 3D and retrospectively respiratory gated 3D MR coronary angiography with conventional coronary arteriography
    Wielopolski, PA
    VanGuens, RJ
    DeFeijter, PJ
    DeBruin, HG
    Bongaerts, AH
    Oudkerk, M
    RADIOLOGY, 1997, 205 : 59 - 59
  • [35] Model evaluation and calibration for prospective respiratory motion correction in coronary MR angiography based on 3-D image registration
    Manke, D
    Rösch, P
    Nehrke, K
    Börnert, P
    Dössel, O
    IEEE TRANSACTIONS ON MEDICAL IMAGING, 2002, 21 (09) : 1132 - 1141
  • [36] Improved magnetization preparation for navigator steady-state free precession 3D coronary MR angiography
    Nguyen, TD
    Spincemaille, P
    Wang, Y
    MAGNETIC RESONANCE IN MEDICINE, 2004, 51 (06) : 1297 - 1300
  • [37] Whole-heart T1 mapping using a 2D fat image navigator for respiratory motion compensation
    Nordio, Giovanna
    Schneider, Torben
    Cruz, Gastao
    Correia, Teresa
    Bustin, Aurelien
    Prieto, Claudia
    Botnar, Rene M.
    Henningsson, Markus
    MAGNETIC RESONANCE IN MEDICINE, 2020, 83 (01) : 178 - 187
  • [38] Adaptive vessel tracking: Automated computation of vessel trajectories for improved efficiency in 2D coronary MR angiography
    Saranathan, M
    Ho, VB
    Hood, MN
    Foo, TKF
    Hardy, CJ
    JOURNAL OF MAGNETIC RESONANCE IMAGING, 2001, 14 (04) : 368 - 373
  • [39] Nonrigid Autofocus Motion Correction for Coronary MR Angiography with a 3D Cones Trajectory
    Ingle, R. Reeve
    Wu, Holden H.
    Addy, Nii Okai
    Cheng, Joseph Y.
    Yang, Phillip C.
    Hu, Bob S.
    Nishimura, Dwight G.
    MAGNETIC RESONANCE IN MEDICINE, 2014, 72 (02) : 347 - 361
  • [40] Coronary MR angiography: Selection of acquisition window of minimal cardiac motion with electrocardiography-triggered navigator cardiac motion prescanning-initial results
    Wang, Y
    Watts, R
    Mitchell, IR
    Nguyen, TD
    Bezanson, JW
    Bergman, GW
    Prince, MR
    RADIOLOGY, 2001, 218 (02) : 580 - 585