Circulation System Modelling with National Implantable Ventricular Assist Device (NIVAD): Hydrodynamic Characters, Hemolysis Test in Vitro and Animal Experiments

Author:

Li Tieyan,Ye Liang,Lu Rong,Fan Huimin,Liu Zhongmin

Publisher

Springer Berlin Heidelberg

Reference18 articles.

1. Kwon, M.H., Moriguchi, J.D., Ardehali, A., et al.: Use of ventricular assist device as a bridge to cardiac transplantation: impact of age and other determinants on outcomes. J. Tex. Heart. Inst. 36, 214–219 (2009)

2. Fan, H.M., Hong, F.W., Zhang, G.P., et al.: Application of CFD techniques in the design and flow analysis of implantable axial flow blood pump. J. Hydrodynamics 22, 518–525 (2002)

3. Fan, H.M., Hong, F.W., Zhou, L.D., et al.: Design of implantable axial- flow blood pump and numerical studies on its performance. J. Hydrodynamics 21, 445–452 (2009)

4. Tuzun, E., Eya, K., Chee, H.K., et al.: Myocardial hemodynamics, physiology, and perfusion with an axial flow left ventricular aAssist device in the calf. J. ASAIO 50, 47–53 (2004)

5. Frazier, O.H., Cohn, W.E., Tuzun, E., et al.: Continuous-Flow total artificial heart supports long-term survival of a calf. J. Tex. Heart. Inst. 36, 568–574 (2009)

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