Published in J Cardiovasc Magn Reson on December 10, 2009
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Flow measurement by cardiovascular magnetic resonance: a multi-centre multi-vendor study of background phase offset errors that can compromise the accuracy of derived regurgitant or shunt flow measurements. J Cardiovasc Magn Reson (2010) 1.88
Heart valve disease: investigation by cardiovascular magnetic resonance. J Cardiovasc Magn Reson (2012) 1.06
Baseline correction of phase-contrast images in congenital cardiovascular magnetic resonance. J Cardiovasc Magn Reson (2010) 1.03
Sequence optimization to reduce velocity offsets in cardiovascular magnetic resonance volume flow quantification--a multi-vendor study. J Cardiovasc Magn Reson (2011) 0.98
Chemical shift-induced phase errors in phase-contrast MRI. Magn Reson Med (2012) 0.89
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Method for calculating confidence intervals for phase contrast flow measurements. J Cardiovasc Magn Reson (2014) 0.75
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Interstudy reproducibility of right ventricular volumes, function, and mass with cardiovascular magnetic resonance. Am Heart J (2004) 3.15
Semiautomated method for noise reduction and background phase error correction in MR phase velocity data. J Magn Reson Imaging (1993) 2.33
Baseline correction of phase contrast images improves quantification of blood flow in the great vessels. J Cardiovasc Magn Reson (2007) 2.21
Phase-velocity cine magnetic resonance imaging measurement of pulsatile blood flow in children and young adults: in vitro and in vivo validation. Pediatr Cardiol (2000) 1.67
Flow measurement by magnetic resonance: a unique asset worth optimising. J Cardiovasc Magn Reson (2007) 1.61
Correction of phase offset errors in main pulmonary artery flow quantification. J Magn Reson Imaging (2005) 1.51
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Construction of a protocol for measuring blood flow by two-dimensional phase-contrast MRA. J Magn Reson Imaging (1999) 1.10
Cardiac magnetic resonance versus routine cardiac catheterization before bidirectional glenn anastomosis in infants with functional single ventricle: a prospective randomized trial. Circulation (2007) 1.01
Clinical applications of cardiovascular magnetic resonance in congenital heart disease. Cardiol Clin (2007) 0.98
Comparison between phase-velocity cine magnetic resonance imaging and invasive oximetry for quantification of atrial shunts. Am J Cardiol (2003) 0.88
Left heart growth, function, and reintervention after balloon aortic valvuloplasty for neonatal aortic stenosis. Circulation (2005) 1.19
Promoting angiogenesis protects severely hypertrophied hearts from ischemic injury. Ann Thorac Surg (2004) 1.17
Outcome after reconstruction of discontinuous pulmonary arteries. J Thorac Cardiovasc Surg (2002) 1.06
Evidence of adverse ventricular interdependence in patients with atrial septal defects. Am J Cardiol (2004) 0.95
Recombinant human growth hormone treatment for dilated cardiomyopathy in children. Pediatrics (2004) 0.88
Myocyte apoptosis occurs early during the development of pressure-overload hypertrophy in infant myocardium. J Thorac Cardiovasc Surg (2009) 0.85
Regional implementation of a pediatric cardiology chest pain guideline using SCAMPs methodology. Pediatrics (2013) 0.85
Two cases of a double aortic arch with left arch atresia subtype 2 and Kommerell's diverticulum. Cardiol Young (2011) 0.84
Clinical outcomes and utility of cardiac catheterization prior to superior cavopulmonary anastomosis. J Thorac Cardiovasc Surg (2003) 0.83
Infliximab treatment for pediatric refractory Kawasaki disease. Pediatr Cardiol (2011) 0.82
Prevalence of noncardiac findings in patients undergoing cardiac magnetic resonance imaging. ScientificWorldJournal (2012) 0.75
Left aortic arch with right descending aorta and right arterial ligament. Cardiol Young (2008) 0.75