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P S Ayyaswamy

Showing results (1-10 of 24) with videos related to

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Microgravity Science and Technology|January 1, 1997
Dynamics of a microcarrier particle in the simulated microgravity environment of a rotating-wall vesselH Gao, P S Ayyaswamy, P Ducheyne
Biomaterials|June 23, 1999
Fabrication, characterization and evaluation of bioceramic hollow microspheres used as microcarriers for 3-D bone tissue formation in rotating bioreactorsQ Q Qiu, P Ducheyne, P S Ayyaswamy
In Vitro Cellular & Developmental Biology. Animal|May 24, 2001
3D bone tissue engineered with bioactive microspheres in simulated microgravityQ Q Qiu, P Ducheyne, P S Ayyaswamy
Annals of the New York Academy of Sciences|May 12, 2009
Bubble motion through a generalized power-law fluid flowing in a vertical tubeKarthik Mukundakrishnan, David M Eckmann, P S Ayyaswamy
Journal of Biomechanical Engineering|July 31, 2009
Bubble motion in a blood vessel: shear stress induced endothelial cell injuryK Mukundakrishnan, P S Ayyaswamy, D M Eckmann
Journal of Biomedical Materials Research|July 25, 2000
New bioactive, degradable composite microspheres as tissue engineering substratesQ Q Qiu, P Ducheyne, P S Ayyaswamy
Journal of Biomechanical Engineering|August 1, 1986
Perfused phantom models of microwave irradiated tissueJ W Baish, K R Foster, P S Ayyaswamy
Biotechnology and Bioengineering|October 9, 2001
Surface transformation of bioactive glass in bioreactors simulating microgravity conditions. Part I: experimental studyS Radin, P Ducheyne, P S Ayyaswamy, et al.
Annals of Biomedical Engineering|July 14, 2010
Surfactant properties differentially influence intravascular gas embolism mechanicsT N Swaminathan, P S Ayyaswamy, D M Eckmann
Journal of Biomechanical Engineering|November 1, 1986
Heat transport mechanisms in vascular tissues: a model comparisonJ W Baish, P S Ayyaswamy, K R Foster
Pageof 3

Showing results (1-10 of 24) with videos related to

Sort By:
Pageof 3
Microgravity Science and Technology|January 1, 1997
Dynamics of a microcarrier particle in the simulated microgravity environment of a rotating-wall vesselH Gao, P S Ayyaswamy, P Ducheyne
Biomaterials|June 23, 1999
Fabrication, characterization and evaluation of bioceramic hollow microspheres used as microcarriers for 3-D bone tissue formation in rotating bioreactorsQ Q Qiu, P Ducheyne, P S Ayyaswamy
In Vitro Cellular & Developmental Biology. Animal|May 24, 2001
3D bone tissue engineered with bioactive microspheres in simulated microgravityQ Q Qiu, P Ducheyne, P S Ayyaswamy
Annals of the New York Academy of Sciences|May 12, 2009
Bubble motion through a generalized power-law fluid flowing in a vertical tubeKarthik Mukundakrishnan, David M Eckmann, P S Ayyaswamy
Journal of Biomechanical Engineering|July 31, 2009
Bubble motion in a blood vessel: shear stress induced endothelial cell injuryK Mukundakrishnan, P S Ayyaswamy, D M Eckmann
Journal of Biomedical Materials Research|July 25, 2000
New bioactive, degradable composite microspheres as tissue engineering substratesQ Q Qiu, P Ducheyne, P S Ayyaswamy
Journal of Biomechanical Engineering|August 1, 1986
Perfused phantom models of microwave irradiated tissueJ W Baish, K R Foster, P S Ayyaswamy
Biotechnology and Bioengineering|October 9, 2001
Surface transformation of bioactive glass in bioreactors simulating microgravity conditions. Part I: experimental studyS Radin, P Ducheyne, P S Ayyaswamy, et al.
Annals of Biomedical Engineering|July 14, 2010
Surfactant properties differentially influence intravascular gas embolism mechanicsT N Swaminathan, P S Ayyaswamy, D M Eckmann
Journal of Biomechanical Engineering|November 1, 1986
Heat transport mechanisms in vascular tissues: a model comparisonJ W Baish, P S Ayyaswamy, K R Foster
Pageof 3