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Biomedical applications biomaterials

Kim K et al (2003) Control of degradation rate and hydrophilicity in electrospun nonwoven poly (D, L-lactide) nanofiber scaffolds for biomedical applications. Biomaterials 24(27) 4977 985... [Pg.124]

A. K. Gupta and M. Gupta, Synthesis and surface engineering of iron oxide nanoparticles for biomedical applications. Biomaterials, 26 (2005) 3995-4021. [Pg.280]

Meng E, Hennink WE, Zhong Z (2009) Reduction-sensitive polymers and bioconjugates for biomedical applications. Biomaterials 30 2180-2198... [Pg.149]

Czaja, W., Young, D. J., Kawecki, M., and Malcolm Brown, Jr., R (2007). The future prospects of microbial cellulose in biomedical applications. Biomaterials, 8,1-12. [Pg.130]

Chen RN, Ho HO, Tsai YT, Sheu MT. Process development of an acellular dermal matrix (ADM) for biomedical applications. Biomaterials 2004 25(13) 2679-86. [Pg.55]

Potta, T., Chun, C., Song, S.C., 2009. Chemically crossUnkable thermosensitive poly-phosphazene gels as injectable materials for biomedical applications. Biomaterials 30 (31), 6178-6192. [Pg.410]

Frauchiger VM, et al. Anodic plasma-chemical treatment of CP titanium surfaces for biomedical applications. Biomaterials 2004 25(4) 593—606. [Pg.157]

Wang DA, Ji J, Gao CY, Yu GH, Feng LX. Surface coating of stearyl poly(ethylene oxide) coupling-polymer on polyurethane guiding catheters with poly(ether urethane) film-building additive for biomedical applications. Biomaterials 2001 22(12) 1549-62. [Pg.343]

Marconi W, Benvenuti F, Piozzi A. Covalent bonding of heparin to a vinyl copolymer for biomedical applications. Biomaterials June 1997 18(12) 885-90. [Pg.380]

Guiseppi-Elie, A. (2010). Electroconductive hydrogels synthesis, characterization and biomedical applications. Biomaterials, 57(10), 2701-2716. [Pg.291]

Yokogawa Y., Nishizawa K., Nagata F., Kameyama T. Bioactive properties ofchitin/chitosan-calcium phosphate composite materials. J. Sol-Gel Sci. Technol. 2001 21 105-113 Yoshioka T., Tsuru K., Hayakawa S., Osaka A. Preparation of alginic acid layers on stainless-steel substrates for biomedical applications. Biomaterials 2003 24 2889-2894... [Pg.1737]

Fang LM, Leng Y, Gao P (2005) Processing of hydroxyapatite reinforced ultrahigh molecular weight polyethylene for biomedical applications. Biomaterials 26 3471-3478... [Pg.196]

Greish YE, Bender JD, Lakshmi S et al (2005) Low temperature formation of hydroxyapatite-poly(alkyl oxybenzoate)phosphazene composites for biomedical applications. Biomaterials 26 1-9... [Pg.200]

Lopes MA, Silva RE, Monteiro FJ, Santos JD. Micro structural dependence of Young s and shear moduli of P2O5 glass reinforced hydroxyapatite for biomedical applications. Biomaterials 2000 21(7) 749-54. [Pg.304]


See other pages where Biomedical applications biomaterials is mentioned: [Pg.136]    [Pg.237]    [Pg.145]    [Pg.477]    [Pg.814]    [Pg.148]    [Pg.353]    [Pg.329]    [Pg.102]    [Pg.293]   
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