References
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- Stevenson D. M., Yoganathan A. P., Franch R. H. The Björk-Shiley heart valve prosthesis: Flow characteristics of the new 70° model. Scand J Thor Cardiovasc Surg 1982; 16: 1
- Wieting D. W. Dynamic flow characteristics of heart valves. Ph.D. Thesis, University of Texas, Austin 1969
- Yoganathan A. P. Cardiovascular fluid mechanics. Ph.D. Thesis, California Institute of Technology. 1978
- Yoganathan A. P., Corcoran W. H., Harrison E. C., Carl J. R. The Björk-Shiley aortic prosthesis: Flow characteristics, thrombus formation and tissue overgrowth. Circulation 1978; 58: 70
- Yoganathan A. P., Harrison E. C., Corcoran W. H. Pressure drops across prosthetic aortic heart valves under steady and pulsatile flow—in vitro measurements. J Biomech 1979a; 12: 153
- Yoganathan A. P., Reamer H. H., Corcoran W. H., Harrison E. C. A laser-Doppler anemometer to study velocity fields in the vicinity of prosthetic heart valves. Med Biol Eng and Comp 1979b; 17: 38
- Yoganathan A. P., Corcoran W. H., Harrison E. C., Chaux A. In vitro fluid dynamics of the St. Jude, Ionescu-Shiley and Carpentier-Edwards aortic heart valve prostheses. Bio Fluid Mechanics, D. J. Schneck. Plenum Press, New York 1980a; vol. 2: 295
- Yoganathan A. P., Reamer H. H., Corcoran W. H., Harrison E. C. The Björk-Shiley aortic prosthesis: How characteristics of the present model vs. the convexo-concave model. Scand J Thor Cardiovasc Surg 1980b; 14: 1
- Yoganathan A. P. Prosthetic Heart Valves: A study of In Vitro Performance. 1982, Final Report (Phase I), FDA Contract No. 223–81–500