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ASAIO Journal (American Society for Artificial Internal Organs : 1992)|May 1, 1996
Identification of peak stresses in cardiac prostheses. A comparison of two-dimensional versus three-dimensional principal stress analysesA A Fontaine, J T Ellis, T M Healy, et al.Journal of the American Society of Echocardiography : Official Publication of the American Society of Echocardiography|January 1, 1996
The effect of aortic outflow on the quantification of mitral regurgitation by the flow convergence methodJ Hopmeyer, A A Fontaine, S Yang, et al.Journal of Biomechanics|July 1, 1996
How sensitive are jet centerline velocities to an opposing flow? Implications for using the centerline method to quantify regurgitant jet flowR Y Grimes, J Hopmeyer, E G Cape, et al.Journal of Biomechanical Engineering|July 21, 1999
Pulsatile flow computational simulations of mitral regurgitationJ Hopmeyer, P W Wilkerson, K M Thorvig, et al.The Journal of Heart Valve Disease|March 1, 1997
Importance of leaflet elongation in causing systolic anterior motion of the mitral valveS He, J Hopmeyer, X P Lefebvre, et al.Journal of the American Society of Echocardiography : Official Publication of the American Society of Echocardiography|May 8, 1998
Estimation of mitral regurgitation with a hemielliptic curve-fitting algorithm: in vitro experiments with native mitral valvesJ Hopmeyer, S He, K M Thorvig, et al.Annals of Biomedical Engineering|September 1, 1996
Computational simulations of mitral regurgitation quantification using the flow convergence method: comparison of hemispheric and hemielliptic formulaeJ Hopmeyer, E Whitney, D A Papp, et al.Circulation|September 17, 1998
Mechanism of mitral regurgitation in hypertrophic cardiomyopathy: mismatch of posterior to anterior leaflet length and mobilityE Schwammenthal, S Nakatani, S He, et al.Pageof 1