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Cellular and Molecular Bioengineering|September 21, 2020
Cyclic Strain Promotes H19 Expression and Vascular Tube Formation in iPSC-Derived Endothelial CellsMark J Vander Roest, W David MerrymanFuture Cardiology|October 7, 2009
What modulates the aortic valve interstitial cell phenotype?W David MerrymanJournal of Biomechanics|October 9, 2009
Mechano-potential etiologies of aortic valve diseaseW David MerrymanScience and Engineering Ethics|February 13, 2008
Development of a tissue engineered heart valve for pediatrics: a case study in bioengineering ethicsW David MerrymanCurrent Cardiology Reports|March 26, 2013
Mechanisms of calcification in aortic valve disease: role of mechanokinetics and mechanodynamicsW David Merryman, Frederick J SchoenJournal of Biomechanics|February 6, 2014
In vitro assessment of a combined radiofrequency ablation and cryo-anchoring catheter for treatment of mitral valve prolapseSteven M Boronyak, W David MerrymanAnnals of Biomedical Engineering|April 26, 2012
Development of a simultaneous cryo-anchoring and radiofrequency ablation catheter for percutaneous treatment of mitral valve prolapseSteven M Boronyak, W David MerrymanJournal of Cell Science|April 29, 2015
Mechanobiology of myofibroblast adhesion in fibrotic cardiac diseaseAlison K Schroer, W David MerrymanFuture Cardiology|September 28, 2012
The once and future state of percutaneous mitral valve repairSteven M Boronyak, W David MerrymanCardiovascular Pathology : the Official Journal of the Society for Cardiovascular Pathology|September 25, 2014
In vitro models of aortic valve calcification: solidifying a systemMeghan A Bowler, W David MerrymanPageof 8