Geometric Changes and Pulsatility Effects on Oscillatory Shear Stress Environments: Implications for Heart Valve Tissue Engineering
Manuel Salinas
Part of the Computer Sciences Commons
Works by Richard R. Lange in Computer Sciences
2018
2014
Oscillatory Shear Stress Created by Fluid Pulsatility versus Flexed Specimen Configurations
CCE Faculty Articles
2013
A Comparative Study of Pulsatility and Flexural States to Promote Bone Marrow Stem Cells Regulation
CCE Faculty Proceedings, Presentations, Speeches and Lectures
2012
Geometric Changes and Pulsatility Effects on Oscillatory Shear Stress Environments: Implications for Heart Valve Tissue Engineering
CCE Faculty Proceedings, Presentations, Speeches and Lectures
Computational Prediction of Fluid Induced Stress States in Dynamically Conditioned Engineered Heart Valve Tissues
CCE Faculty Proceedings, Presentations, Speeches and Lectures
2011
A Study of Time Varying Effects in the Dynamic Culture of Engineered Heart Valves
CCE Faculty Proceedings, Presentations, Speeches and Lectures
Specimen Dynamics and Subsequent Implications in Heart Valve Tissue Engineering Studies
CCE Faculty Proceedings, Presentations, Speeches and Lectures
Heart Valve Tissue Engineering: Implications of Specimen Dynamics
CCE Faculty Proceedings, Presentations, Speeches and Lectures
Insights on Specimen Movement Effects on Engineered Heart Valve Tissue
CCE Faculty Proceedings, Presentations, Speeches and Lectures