Sun R, Liu M, Lu L et al (2015) Congenital heart disease: causes, diagnosis, symptoms, and treatments. Cell Biochem Biophys 72:857–860
Article CAS PubMed Google Scholar
Geiger J, Markl M, Jung B et al (2011) 4D-MR flow analysis in patients after repair for tetralogy of Fallot. Eur Radiol 21:1651–1657
Article CAS PubMed Google Scholar
Whitehead KK, Harris MA, Glatz AC et al (2015) Status of systemic to pulmonary arterial collateral flow after the fontan procedure. Am J Cardiol 115:1739–1745
Article PubMed PubMed Central Google Scholar
Powell AJ, Geva T (2000) Blood flow measurement by magnetic resonance imaging in congenital heart disease. Pediatr Cardiol 21:47–58
Article CAS PubMed Google Scholar
Markl M, Schnell S, Wu C et al (2016) Advanced flow MRI: emerging techniques and applications. Clin. Radiol. Special Issue: Spotlight on Cardiovascular Imaging 71:779–795
Dyverfeldt P, Bissell M, Barker AJ et al (2015) 4D flow cardiovascular magnetic resonance consensus statement. J Cardiovasc Magn Reson 17:72
Article PubMed PubMed Central Google Scholar
Carlsson M, Töger J, Kanski M et al (2011) Quantification and visualization of cardiovascular 4D velocity mapping accelerated with parallel imaging or k-t BLAST: head to head comparison and validation at 1.5 T and 3 T. J Cardiovasc Magn Reson 13:55
Article PubMed PubMed Central Google Scholar
Schnell S, Markl M, Entezari P et al (2014) k-t GRAPPA accelerated four-dimensional flow MRI in the aorta: Effect on scan time, image quality, and quantification of flow and wall shear stress. Magn Reson Med 72:522–533
Giese D, Wong J, Greil GF et al (2014) Towards highly accelerated Cartesian time-resolved 3D flow cardiovascular magnetic resonance in the clinical setting. J Cardiovasc Magn Reson 16:1–8
Lawley CM, Broadhouse KM, Callaghan FM et al (2018) 4D flow magnetic resonance imaging: role in pediatric congenital heart disease. Asian Cardiovasc Thorac Ann 26:28–37
Fratz S, Chung T, Greil GF et al (2013) Guidelines and protocols for cardiovascular magnetic resonance in children and adults with congenital heart disease: SCMR expert consensus group on congenital heart disease. J Cardiovasc Magn Reson 15:51
Article PubMed PubMed Central Google Scholar
Bissell MM, Raimondi F, Ait Ali L et al (2023) 4D flow cardiovascular magnetic resonance consensus statement: 2023 update. J Cardiovasc Magn Reson 25:40
Article PubMed PubMed Central Google Scholar
Gu T, Korosec FR, Block WF et al (2005) PC VIPR: a high-speed 3D phase-contrast method for flow quantification and high-resolution angiography. AJNR Am J Neuroradiol 26:743–749
PubMed PubMed Central Google Scholar
François CJ, Srinivasan S, Schiebler ML et al (2012) 4D cardiovascular magnetic resonance velocity mapping of alterations of right heart flow patterns and main pulmonary artery hemodynamics in tetralogy of Fallot. J Cardiovasc Magn Reson 14:16
Article PubMed PubMed Central Google Scholar
Rutkowski DR, Barton G, François CJ et al (2019) Analysis of cavopulmonary and cardiac flow characteristics in fontan patients: comparison with healthy volunteers. J Magn Reson Imaging 49:1786–1799
Article PubMed PubMed Central Google Scholar
Feng L, Grimm R, Block KT et al (2014) Golden-angle radial sparse parallel MRI: combination of compressed sensing, parallel imaging, and golden-angle radial sampling for fast and flexible dynamic volumetric MRI. Magn Reson Med 72:707–717
Feng L, Axel L, Chandarana H et al (2016) XD-GRASP: Golden-angle radial MRI with reconstruction of extra motion-state dimensions using compressed sensing. Magn Reson Med 75:775–788
Zhu X, Larson PEZ (2020) Iterative motion ‐ compensation reconstruction ultra ‐ short TE ( iMoCo UTE ) for high ‐ resolution free ‐ breathing pulmonary MRI 1208–1221
Braig M, Menza M, Leupold J et al (2020) Analysis of accelerated 4D flow MRI in the murine aorta by radial acquisition and compressed sensing reconstruction. NMR Biomed 33:e4394
Article CAS PubMed Google Scholar
Rivera-Rivera LA, Kecskemeti S, Jen M-L, Miller Z et al (2022) Motion-corrected 4D-flow MRI for neurovascular applications. NeuroImage 264:119711
Coppo S, Piccini D, Bonanno G et al (2015) Free-running 4D whole-heart self-navigated golden angle MRI: initial results. Magn Reson Med 74:1306–1316
Brunsing RL, Brown D, Almahoud H et al (2021) Quantification of the hemodynamic changes of cirrhosis with free-breathing self-navigated MRI. J Magn Reson Imaging 53:1410–1421
Article PubMed PubMed Central Google Scholar
Jiang W, Ong F, Johnson KM et al (2018) Motion robust high resolution 3D free-breathing pulmonary MRI using dynamic 3D image self-navigator. Magn Reson Med 79:2954–2967
Addy NO, Ingle RR, Luo J et al (2017) 3D image-based navigators for coronary MR angiography. Magn Reson Med 77:1874–1883
Gottwald LM, Blanken CPS, Tourais J et al (2021) Retrospective camera-based respiratory gating in clinical whole-heart 4D flow MRI. J Magn Reson Imaging 54:440–451
Article PubMed PubMed Central Google Scholar
Dyverfeldt P, Ebbers T (2017) Comparison of respiratory motion suppression techniques for 4D flow MRI. Magn Reson Med 78:1877–1882
Article PubMed PubMed Central Google Scholar
Pruitt A, Rich A, Liu Y et al (2021) Fully self-gated whole-heart 4D flow imaging from a 5-minute scan. Magn Reson Med 85:1222–1236
Ma LE, Yerly J, Piccini D et al (2020) 5D flow MRI: A fully self-gated, free-running framework for cardiac and respiratory motion–resolved 3D hemodynamics. Radiol Cardiothorac Imaging 2:e200219
Article PubMed PubMed Central Google Scholar
Cheng JY, Hanneman K, Zhang T et al (2016) Comprehensive motion-compensated highly accelerated 4D flow MRI with ferumoxytol enhancement for pediatric congenital heart disease. J Magn Reson Imaging 43:1355–1368
Schrauben EM, Lim JM, Goolaub DS et al (2020) Motion robust respiratory-resolved 3D radial flow MRI and its application in neonatal congenital heart disease. Magn Reson Med 83:535–548
Cheng JY, Zhang T, Alley MT et al (2017) Comprehensive multi-dimensional MRI for the simultaneous assessment of cardiopulmonary anatomy and physiology. Sci Rep 7:5330
Article PubMed PubMed Central Google Scholar
Ma LE, Markl M, Chow K et al (2019) Aortic 4D flow MRI in 2 minutes using compressed sensing, respiratory controlled adaptive k-space reordering, and inline reconstruction. Magn Reson Med 81:3675–3690
Article PubMed PubMed Central Google Scholar
Panayiotou HR, Mills LK, Broadbent DA et al (2023) Comprehensive neonatal cardiac, feed and wrap, non-contrast, non-sedated, free-breathing compressed sensing 4d flow MRI assessment. J Magn Reson Imaging 57:789–799
Baron CA, Dwork N, Pauly JM, Nishimura DG (2018) Rapid compressed sensing reconstruction of 3D non-Cartesian MRI. Magn Reson Med 79:2685–2692
Neuhaus E, Weiss K, Bastkowski R et al (2019) Accelerated aortic 4D flow cardiovascular magnetic resonance using compressed sensing: applicability, validation and clinical integration. J Cardiovasc Magn Reson 21:65
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