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Neural tissue engineering

Woerly, S. Plant, G.W. Harvey, A.R. Neural tissue engineering from polymer to biohybrid organs. Biomaterials 1996, 17, 301-310. [Pg.2038]

Neural tissue repair in order to treat nerve damage or neuropathy arising from a spinal cord or cerebral injury essentially requires the intervention of tissue engineering because axons are unable to regenerate on their own. Hence, recent advances in neural tissue engineering provide suitable and promising substitutes... [Pg.12]

Yang F et al (2005) Electrospinning of nano/micro scale poly(L-lactic acid) aligned fibers and their potential in neural tissue engineering. Biomaterials 26(15) 2603-2610... [Pg.208]

Valmikinathan CM et al (2008) Novel nanofibrous spiral scaffolds for neural tissue engineering. J Neural Eng 5(4) 422-432... [Pg.210]

Crompton KE, Goud JD et al (2007) Polylysine-functionalised thermoresponsive chitosan hydrogel for neural tissue engineering. Biomaterials 28 441 149... [Pg.43]

Scanga VI, Goraltchouk A, Nussaiba N et al (2010) Biomaterials for neural-tissue engineering- chitosan supports the survival, migration, and differentiation of adult-derived neural stem and progenitor cells. Can J Chem 88 277-287... [Pg.78]

Kapur, T. A., and Shoichet, M. S. (2003) Chemically-bound nerve growth factor for neural tissue engineering applications. /. Bio-mater. Sci. Polym. Ed. 14, 383-394. [Pg.254]

Stabenfeldt, S.E. Garcia, A.J. LaPlaca, M.C. Thermoreversible laminin-functionalized hydrogel for neural tissue engineering. J. Biomed. Mater. Res. A 2006,77 (4), 718-725. [Pg.568]

L. Karumbaiah, R. Bellamkonda, Neural Tissue Engineering. Neural Engineering, Springer Science+Business Media, New York, 2013, pp. 765-794. [Pg.55]

L. Hynn, P.D. Dalton, M.S. Shoichet, Fiber templating of poly [178] (2-hydroxyethyl methacrylate) for neural tissue engineering. Biomaterials 24 (2003) 4265-4272. [Pg.286]

S.M. Willerth, S.E. Sakiyama-Elbert, Approaches to neural tissue engineering using scaffolds for drug delivery. Matrices Scaffolds Drug Deliv. Tissue Eng. 59 (4-5) (2007) 325-338, doi 10.1016/j. addr.2007.03.014. [Pg.365]

Schmidt, C., Leach, J. Neural tissue engineering strategies for repair and regeneration. Rev. Biomed. Eng. 5, 293-347 (2003)... [Pg.421]

Cullen, D.K., Wolf, J.A., Vemekar, V.N., Vukasinovic, J., LaPlaca, M.C., 2011. Neural tissue engineering and biohybiidized microsystems for neurobiological investigation In Vitro (Part 1). Critical Reviews in Biomedical Engineering 39(3), 201-240. [Pg.112]

Wang, X., He, J., Wang, Y., Cui, F.Z., 2012. Hyaluronic acid-based scaffold for central neural tissue engineering. Interface Focus 2, 278-291. [Pg.117]

The Clinical Need for New Biomaterials in Neural Tissue Engineering... [Pg.155]

M.L. Siriwardane, K. DeRosa, G. Collins, B J. Pfister, Controlled formation of cross-linked collagen fibers for neural tissue engineering applications. Biofabrication 6(1) (2014) 15012. [Pg.254]

Yu, T.T., Shoichet, M.S., 2005. Guided ceU adhesion and outgrowth in peptide-modified channels for neural tissue engineering. Biomaterials 26 (13), 1507. [Pg.542]

Straley K, Heilshom SC (2009) Designer protein-based scaffolds for neural tissue engineering. Conf Proc IEEE Eng Med Biol Soc 1 2101-2102... [Pg.176]

Nisbet DR, Crompton KE, Home MK, Finkelstein DI, Forsythe JS (2008) Neural tissue engineering of the CNS using hydrogels. J Biomed Mater Res B Appl Biomater 87(1) 251-263. doi 10.1002/jbm.b.31000... [Pg.428]


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See also in sourсe #XX -- [ Pg.232 ]




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