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Artificial Organs|April 1, 1997
Improved flow straighteners reduce thrombus in the NASA/DeBakey axial flow ventricular assist deviceK Kawahito, R Benkowski, S Ohtsubo, et al.Artificial Organs|September 1, 1996
Hemolytic characteristics of a pivot bearing supported Gyro centrifugal pump (C1E3) simulating various clinical applicationsY Takami, K Makinouchi, T Nakazawa, et al.Journal of Biomedical Materials Research|March 25, 1998
Protein adsorption onto ceramic surfacesY Takami, S Yamane, K Makinouchi, et al.Artificial Organs|January 10, 1998
Estimation of the minimum pump speed to prevent regurgitation in the continuous flow left ventricular assist device: left ventricular drainage versus left atrial drainageE Tayama, Y Ohashi, Y Niimi, et al.ASAIO Journal (American Society for Artificial Internal Organs : 1992)|September 1, 1996
Ex vivo evaluation of the NASA/DeBakey axial flow ventricular assist device. Results of a 2 week screening testK Kawahito, R Benkowski, S Otsubo, et al.Artificial Organs|April 29, 1998
The safety system for the rotary blood pump, combination of the valve and LVAD pulsatile mode: in vitro testE Tayama, Y Ohashi, Y Niimi, et al.Artificial Organs|January 5, 2000
The DeBakey ventricular assist device: current status in 1997E Tayama, D B Olsen, Y Ohashi, et al.Artificial Organs|February 1, 1995
A fluid dynamic analysis using flow visualization of the Baylor/NASA implantable axial flow blood pump for design improvementJ T Wernicke, D Meier, K Mizuguchi, et al.Artificial Organs|January 1, 1996
Ex vivo phase 1 evaluation of the DeBakey/NASA axial flow ventricular assist deviceK Kawahito, G Damm, R Benkowski, et al.Pageof 3