Pressure development within a sac-type pneumatically driven ventricular assist device
Author:
Publisher
Elsevier BV
Subject
Rehabilitation,Biomedical Engineering,Orthopedics and Sports Medicine,Biophysics
Reference24 articles.
1. Hot film wall shear probe measurements inside a ventricular assist device;Baldwin;Trans. ASME. J. Biomech. Eng.,1988
2. Laser anemometry measurements of pulsatile flow past aortic valve prostheses;Chandran;J. Biomechanics,1983
3. Effects of prosthetic mitral valve geometry and orientation on flow dynamics in a model human left ventricle;Chandran;J. Biomechanics,1989
4. Pumping characteristics of pneumatically driven vetnricular assist device: general principles;Clark,1994
5. The fluid mechanics of a sac-type ventricular assist device;Clark;Int. J. Artif. Organs,1990
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1. Modeling, analysis, and validation of a pneumatically driven left ventricle for use in mock circulatory systems;Medical Engineering & Physics;2007-10
2. UNSTEADY FLOW IN A 3D CENTRALLY-ACTUATED TYPE ARTIFICIAL HEART;International Journal of Modern Physics C;2007-05
3. Design and Hydrodynamic Evaluation of a Novel Pulsatile Bioreactor for Biologically Active Heart Valves;Annals of Biomedical Engineering;2004-08
4. Diaphragm Motion Affects Flow Patterns in an Artificial Heart;Artificial Organs;2003-12
5. Influence of the Compliance of the Pump Housing and Cannulas of a Paracorporeal Pneumatic Ventricular Assist Device on Transient Pressure Characteristics;Artificial Organs;1995-06
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