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Progress in Cardiovascular Diseases|July 1, 1996
Stratification of thromboembolic risk of atrial fibrillation by transthoracic echocardiography and transesophageal echocardiography: the relative role of left atrial appendage function, mitral valve disease, and spontaneous echocardiographic contrastD Fatkin, M FeneleyAmerican Heart Journal|November 1, 1996
Patterns of Doppler-measured blood flow velocity in the normal and fibrillating human left atrial appendageD Fatkin, M P FeneleyThe American Journal of Cardiology|April 1, 1994
Hematologic correlates of spontaneous echo contrast in patients with atrial fibrillation and implications for thromboembolic riskD Fatkin, E Herbert, M P FeneleyUltrasound in Medicine & Biology|January 1, 1997
Direct effects of DC cardioversion on blood echogenicity: an in vitro studyD Fatkin, T Loupas, M P FeneleyCirculation|August 5, 1997
Inhibition of red cell aggregation prevents spontaneous echocardiographic contrast formation in human bloodD Fatkin, T Loupas, J Low, et al.Australian and New Zealand Journal of Medicine|August 1, 1991
Arrhythmogenic right ventricular dysplasiaD Fatkin, J Hickie, C Thorburn, et al.American Heart Journal|April 16, 1998
Rapid onset and dissipation of left atrial spontaneous echo contrast during percutaneous balloon mitral valvotomyD Fatkin, P Roy, A Sindone, et al.The Journal of Membrane Biology|January 1, 1980
Glycerol treatment in mammalian skeletal muscleD F Davey, A F Dulhunty, D FatkinJournal of the American College of Cardiology|March 15, 1994
Relations between left atrial appendage blood flow velocity, spontaneous echocardiographic contrast and thromboembolic risk in vivoD Fatkin, R P Kelly, M P FeneleyUltrasound in Medicine & Biology|January 1, 1995
Quantification of blood echogenicity: evaluation of a semiquantitative method of grading spontaneous echo contrastD Fatkin, T Loupas, N Jacobs, et al.Pageof 3