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Artificial Organs|July 3, 1998
Implantable micropump system for augmented liver perfusionO Marseille, N Habib, H Reul, et al.
The International Journal of Artificial Organs|March 1, 1991
Cavitation potential of mechanical heart valve prosthesesT Graf, H Fischer, H Reul, et al.
The International Journal of Artificial Organs|November 1, 1991
Shear stress related blood damage along the cusp of a tri-leaflet prosthetic valveS Einav, H Reul, G Rau, et al.
The International Journal of Artificial Organs|May 1, 1990
Estimation of shear stress-related blood damage in heart valve prostheses--in vitro comparison of 25 aortic valvesM Giersiepen, L J Wurzinger, R Opitz, et al.
Artificial Organs|February 13, 2003
Investigation of materials for blood-immersed bearings in a microaxial blood pumpA K Mahmood, W Kerkhoffs, O Schumacher, et al.
Medical & Biological Engineering & Computing|June 1, 2000
Can vortices in the flow across mechanical heart valves contribute to cavitation?I Avrahami, M Rosenfeld, S Einav, et al.
The International Journal of Artificial Organs|October 26, 1999
Platelet function and hemolysis in centrifugal pumps: in vitro investigationsD Steines, D Westphal, C Göbel, et al.
The Annals of Thoracic Surgery|April 1, 1997
Clinical experience with the MEDOS HIA-VAD system in infants and children: a preliminary reportW Konertz, H Hotz, M Schneider, et al.
The Journal of Heart Valve Disease|June 1, 1996
In vitro testing of heart valve wear outside of the manufacturers laboratory--requirements and controversiesH Reul, M Eichler, K Potthast, et al.
The Journal of Heart Valve Disease|September 1, 1992
Cavitation of mechanical heart valves under physiologic conditionsT Graf, H Reul, W Dietz, et al.
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