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Coupling between heparan sulfate proteoglycans and FGF-2 receptors is key to FGF-2 capture under flow: a computational study.

, , , , and . BCB, page 439-441. ACM, (2010)

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Coupling between heparan sulfate proteoglycans and FGF-2 receptors is key to FGF-2 capture under flow: a computational study., , , , and . BCB, page 439-441. ACM, (2010)Complex receptor-ligand dynamics control the response of the VEGF system to protease injury., , and . BMC Syst. Biol., (2011)Implementation of an optical method for the real-time determination of uniaxial strain and vessel mechanics., , and . IEEE Trans. Biomed. Eng., 51 (3): 536-538 (2004)Endothelial Cell Capture of Heparin-Binding Growth Factors under Flow., , , , and . PLoS Comput. Biol., (2010)Simulation of FGF-2 Binding with Receptors on Cell Surface on the Wall in a Bioreactor System., , , , and . BIOCOMP, page 724-727. CSREA Press, (2008)A Numerical Study of Pulsatile Flow Through a Hollow Fiber Cartridge: Growth Factor-Receptor Binding and Dissociation Analysis., , , , , and . IJCBS, page 435-441. IEEE Computer Society, (2009)A Computational Model of FGF-2 Binding and HSPG Regulation Under Flow., , , , and . IEEE Trans. Biomed. Eng., 56 (9): 2147-2155 (2009)Parallel simulation of multiple proteins through a bioreactor coupled with biochemical reactions., , , , and . BCB, page 20-28. ACM, (2011)