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Fluids and Barriers of the CNS|June 16, 2018
Is bulk flow plausible in perivascular, paravascular and paravenous channels?Mohammad M Faghih, M Keith SharpJournal of Biomechanical Engineering|September 23, 2016
Extending the Power-Law Hemolysis Model to Complex FlowsMohammad M Faghih, M Keith SharpEuropean Journal of Clinical Investigation|February 2, 2011
Modelling of cardiovascular response to graded orthostatic stress: role of capillary filtrationKaren E Etter, Nandu Goswami, M Keith SharpArtificial Organs|February 20, 2013
Testing of models of flow-induced hemolysis in blood flow through hypodermic needlesYangsheng Chen, Timothy L Kent, M Keith SharpJournal of Biomechanical Engineering|August 15, 2020
On the Discretization of the Power-Law Hemolysis ModelMohammad M Faghih, Ahmed Islam, M Keith SharpFluids and Barriers of the CNS|May 7, 2019
Dispersion in porous media in oscillatory flow between flat plates: applications to intrathecal, periarterial and paraarterial solute transport in the central nervous systemM Keith Sharp, Roxana O Carare, Bryn A MartinEuropean Journal of Applied Physiology|March 30, 2013
Space physiology IV: mathematical modeling of the cardiovascular system in space explorationM Keith Sharp, Jerry Joseph Batzel, Jean-Pierre MontaniArtificial Organs|April 10, 2023
Practical implications of the erroneous treatment of exposure time in the Eulerian hemolysis power law modelMohammad M Faghih, Brent A Craven, M Keith SharpAdvances in Experimental Medicine and Biology|February 23, 2008
Computationally determined shear on cells grown in orbiting culture dishesR Eric Berson, Matthew R Purcell, M Keith SharpThe Journal of Surgical Research|February 19, 2008
In vivo efficacy of a new autologous fibrin sealantSteven M Alston, Kenneth A Solen, Sivaprasad Sukavaneshvar, et al.Pageof 5