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Journal of Biomedical Materials Research. Part A|December 26, 2006
PLGA nanometer surface features manipulate fibronectin interactions for improved vascular cell adhesionDerick C Miller, Karen M Haberstroh, Thomas J WebsterJournal of Biomedical Materials Research. Part A|May 10, 2005
Mechanism(s) of increased vascular cell adhesion on nanostructured poly(lactic-co-glycolic acid) filmsDerick C Miller, Karen M Haberstroh, Thomas J WebsterExpert Review of Medical Devices|November 19, 2005
Technological advances in nanoscale biomaterials: the future of synthetic vascular graft designDerick C Miller, Thomas J Webster, Karen M HaberstrohBiomaterials|October 29, 2003
Endothelial and vascular smooth muscle cell function on poly(lactic-co-glycolic acid) with nano-structured surface featuresDerick C Miller, Anil Thapa, Karen M Haberstroh, et al.Biomaterials|May 14, 2003
Nano-structured polymers enhance bladder smooth muscle cell functionAnil Thapa, Derick C Miller, Thomas J Webster, et al.IEEE Transactions on Nanobioscience|May 13, 2006
Enhanced functions of vascular and bladder cells on poly-lactic-co-glycolic acid polymers with nanostructured surfacesDerick C Miller, Anil Thapa, Karen M Haberstroh, et al.Biomaterials|January 27, 2004
Decreased fibroblast cell density on chemically degraded poly-lactic-co-glycolic acid, polyurethane, and polycaprolactoneRylie J Vance, Derick C Miller, Anil Thapa, et al.Pageof 1