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Latex beads as probes of cell surface-extracellular matrix interactions during chondrogenesis: Evidence for a role for amino-terminal heparin-binding domain of fibronectin
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FRENZ, D.A., AKIYAMA, S.K., PAULSEN, D.F. and NEWMAN, S.A. (1989). Latex beads as probes of cell surface-extracellular matrix interactions during chondrogenesis: evidence for a role for amino-terminal heparin-binding domain of fibronectin. Dev. Biol. 136: 87-96.
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0024436577
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The mechanism of precartilage mesenchymal condensation: A major role for interaction of the cell surface with the amino-terminal heparin-binding domain of fibronectin
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FRENZ, D.A., JAIKARIA, N.S. and NEWMAN, S.A. (1989). The mechanism of precartilage mesenchymal condensation: a major role for interaction of the cell surface with the amino-terminal heparin-binding domain of fibronectin. Dev. Biol. 136: 97-103.
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The emergence of patterning in life's origin and evolution
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HAZEN, R.M. (2009). The emergence of patterning in life's origin and evolution. Int. J. Dev. Biol. 53: 683-692. (doi: 10.1387/ijdb.092936rh)
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HENTSCHEL, H. G., GLIMM, T., GLAZIER, J. A. AND NEWMAN, S. A. (2004). Dynamical mechanisms for skeletal pattern formation in the vertebrate limb. Proc. R. Soc. Lond. B Biol. Sci. 271: 1713-1722.
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7
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0025732395
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Role of transforming growth factor-β in chondrogenic pattern formation in the developing limb: Stimulation of mesenchymal condensation and fibronectin gene expression by exogenous TGF-β and evidence for endogenous TGF-β-like activity
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LEONARD, C.M., FULD, H.M., FRENZ, D.A., DOWNIE, S.A., MASSAGUE, J. and S.A. NEWMAN. (1991). Role of transforming growth factor-β in chondrogenic pattern formation in the developing limb: stimulation of mesenchymal condensation and fibronectin gene expression by exogenous TGF-β and evidence for endogenous TGF-β-like activity. Develop. Biol. 145: 99-109.
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8
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Ectodermal FGFs induce perinodular inhibition of limb chondrogenesis in vitro and in vivo via FGF receptor 2
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MOFTAH, M.Z., DOWNIE, S., BRONSTEIN, N., MEZENTSEVA, N., PU, J., MAHER, P. and NEWMAN, S.A. (2002).Ectodermal FGFs induce perinodular inhibition of limb chondrogenesis in vitro and in vivo via FGF receptor 2. Dev. Biol. 249: 270-282.
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10
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0008415351
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Lineage and pattern in the developing wing bud
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NEWMAN, S.A. (1977). Lineage and pattern in the developing wing bud. In Vertebrate Limb and Somite Morphogenesis (ed. D.A. Ede, J.R. Hinchliffe and M. Balls). pp. 181-200. Cambridge University Press, Cambridge.
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Dynamics of skeletal pattern formation in developing chick limb
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Matrix driven translocation of cells and nonliving particles
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13
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Generic' physical mechanisms of morphogenesis and pattern formation
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NEWMAN, S.A. and COMPER, W.D. (1990). 'Generic' physical mechanisms of morphogenesis and pattern formation. Development 110: 1-18.
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Generic physical mechanisms of tissue morphogenesis: A common basis for development and evolution
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NEWMAN, S.A. (1994). Generic physical mechanisms of tissue morphogenesis: a common basis for development and evolution. J. Evol. Biol. 7: 467-488.
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NEWMAN, S.A., FORGACS, G. and MÜLLER, G.B. (2006). Before programs: The physical origination of multicellular forms. Int. J. Dev. Biol. 50: 289-299.
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Dynamical patterning modules: Physicogenetic determinants of morphological development and evolution
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NEWMAN, S.A. and BHAT, R. (2008). Dynamical patterning modules: physicogenetic determinants of morphological development and evolution. Phys. Biol. 5: 15058.
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NEWMAN, S.A. and BHAT, R. (2009). Dynamical patterning modules: a pattern language for development and evolution of multicellular form. Int. J. Dev. Biol. 53: doi: 693-705. (10.1387/ijdb.072481sn)
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NEWMAN, S.A. and BHAT, R. (2009). Dynamical patterning modules: a "pattern language" for development and evolution of multicellular form. Int. J. Dev. Biol. 53: doi: 693-705. (10.1387/ijdb.072481sn)
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SALAZAR-CIUDAD, I., JERNVALL, J. and NEWMAN, S.A. (2003). Mechanisms of pattern formation in development and evolution. Development 130: 2027-2037.
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