Hungerford, J E; Owens, G K; Argraves, W S et al. (1996) Development of the aortic vessel wall as defined by vascular smooth muscle and extracellular matrix markers. Dev Biol 178:375-92
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Bouchey, D; Drake, C J; Wunsch, A M et al. (1996) Distribution of connective tissue proteins during development and neovascularization of the epicardium. Cardiovasc Res 31 Spec No:E104-15
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Bouchey, D; Argraves, W S; Little, C D (1996) Fibulin-1, vitronectin, and fibronectin expression during avian cardiac valve and septa development. Anat Rec 244:540-51
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Drake, C J; Little, C D (1995) Exogenous vascular endothelial growth factor induces malformed and hyperfused vessels during embryonic neovascularization. Proc Natl Acad Sci U S A 92:7657-61
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Drake, C J; Cheresh, D A; Little, C D (1995) An antagonist of integrin alpha v beta 3 prevents maturation of blood vessels during embryonic neovascularization. J Cell Sci 108 ( Pt 7):2655-61
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Wunsch, A M; Little, C D; Markwald, R R (1994) Cardiac endothelial heterogeneity defines valvular development as demonstrated by the diverse expression of JB3, an antigen of the endocardial cushion tissue. Dev Biol 165:585-601
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Gallagher, B C; Sakai, L Y; Little, C D (1993) Fibrillin delineates the primary axis of the early avian embryo. Dev Dyn 196:70-8
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Potts, A J; Little, C D (1992) Beta 1 integrins isolated from embryonic chicken fibroblasts bind to monomers and polymers of type I collagen. J Cell Physiol 152:558-67
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Spence, S G; Argraves, W S; Walters, L et al. (1992) Fibulin is localized at sites of epithelial-mesenchymal transitions in the early avian embryo. Dev Biol 151:473-84
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Drake, C J; Little, C D (1991) Integrins play an essential role in somite adhesion to the embryonic axis. Dev Biol 143:418-21
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