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Journal of Biomedical Materials Research|June 26, 1998
The aortic valve microstructure: effects of transvalvular pressureM S Sacks, D B Smith, E D HiesterAnnals of Biomedical Engineering|July 1, 1997
A small angle light scattering device for planar connective tissue microstructural analysisM S Sacks, D B Smith, E D HiesterJournal of Biomedical Materials Research|February 11, 1998
Optimal bovine pericardial tissue selection sites. I. Fiber architecture and tissue thickness measurementsE D Hiester, M S SacksJournal of Biomedical Materials Research|February 11, 1998
Optimal bovine pericardial tissue selection sites. II. Cartographic analysisE D Hiester, M S SacksBiomaterials|August 6, 1998
Effects of accelerated testing on porcine bioprosthetic heart valve fiber architectureM S Sacks, D B SmithAnnals of Biomedical Engineering|January 17, 2002
Dynamic in vitro quantification of bioprosthetic heart valve leaflet motion using structured light projectionIyengar AKS, H Sugimoto, D B Smith, et al.Wound Repair and Regeneration : Official Publication of the Wound Healing Society [And] the European Tissue Repair Society|July 27, 1999
Collagen fiber orientation as quantified by small angle light scattering in wounds treated with transforming growth factor-beta2 and its neutalizing antibodyL E Bowes, M C Jimenez, E D Hiester, et al.The Journal of Heart Valve Disease|March 30, 1999
Fatigue-induced changes in bioprosthetic heart valve three-dimensional geometry and the relation to tissue damageD B Smith, M S Sacks, P M Pattany, et al.Annals of Biomedical Engineering|September 13, 2000
Surface geometric analysis of anatomic structures using biquintic finite element interpolationD B Smith, M S Sacks, D A Vorp, et al.The Journal of Heart Valve Disease|July 1, 1997
High-resolution magnetic resonance imaging to characterize the geometry of fatigued porcine bioprosthetic heart valvesD B Smith, M S Sacks, P M Pattany, et al.Pageof 29