Biomedical Engineering Reference
In-Depth Information
Xie, J., Macewan, M.R., Schwartz, A.G., Xia, Y., 2010. Electrospun nanoibers for neural tissue engineering.
Nanoscale 2, 35-44 .
Xie, J., Willerth, S.M., Li, X., Macewan, M.R., Rader, A., Sakiyama-Elbert, S.E., Xia, Y., 2009b. The differentiation
of embryonic stem cells seeded on electrospun nanoibers into neural lineages. Biomaterials 30, 354-362 .
Xu, C., Kopecˇek, J., 2007. Self-Assembling Hydrogels. Polymer Bulletin 58, 53-63 .
Xu, H., Holzwarth, J.M., Yan, Y., Xu, P., Zheng, H., Yin, Y., Li, S., Ma, P.X., 2014. Conductive PPY/PDLLA
conduit for peripheral nerve regeneration. Biomaterials 35, 225 .
Yang, F., Murugan, R., Wang, S., Ramakrishna, S., 2005. Electrospinning of nano/micro scale poly( l-lactic acid)
aligned ibers and their potential in neural tissue engineering. Biomaterials 26, 2603-2610 .
Yang, W., Thordarson, P., Gooding, J.J., Ringer, S.P., Braet, F., 2007. Carbon nanotubes for biological and
biomedical applications. Nanotechnology 18, 412001-1412001, (12) .
Yang, Y., Asiri, A.M., Tang, Z., Du, D., Lin, Y., 2013a. Graphene based materials for biomedical applications.
Materials Today 16, 365 .
Yang, Y., Zhao, Z., Zhang, F., Nangreave, J., Liu, Y., Yan, H., 2013b. Self-assembly of DNA rings from scaffold-free
DNA tiles. Nano letters 13, 1862-1866 .
Yang, Y.L., Khoe, U., Wang, X.M., Horii, A., Yokoi, H., Zhang, S.G., 2009. Designer self-assembling peptide
nanomaterials. Nano Today 4, 193-210 .
Zhan, X., Zhang, W., Guo, J., Wu, W., Gao, M., Jiang, Y., Zhang, W., Wong, W.M., Yuan, Q., Su, H., Kang, X.,
Dai, X., 2013. Nanoiber scaffolds facilitate functional regeneration of peripheral nerve injury. Nanomedicine
: nanotechnology, biology, and medicine 9, 305-315 .
Zhang, L., Hemraz, U.D., Fenniri, H., Webster, T.J., 2010. Tuning cell adhesion on titanium with osteogenic rosette
nanotubes. J Biomed Mater Res A 95, 550-563 .
Zhang, L., Rakotondradany, F., Myles, A.J., Fenniri, H., Webster, T.J., 2009a. Arginine-glycine-aspartic acid
modiied rosette nanotube-hydrogel composites for bone tissue engineering. Biomaterials 30, 1309-1320 .
Zhang, L., Ramsaywack, S., Fenniri, H., Webster, T.J., 2008. Enhanced osteoblast adhesion on self-assembled
nanostructured hydrogel scaffolds. Tissue engineering. Part A 14, 1353-1364 .
Zhang, L., Rodriguez, J., Raez, J., Myles, A.J., Fenniri, H., Webster, T.J., 2009b. Biologically inspired rosette
nanotubes and nanocrystalline hydroxyapatite hydrogel nanocomposites as improved bone substitutes.
Nanotechnology 20, 175101 .
Zhang, L.J., Webster, T.J., 2009. Nanotechnology and nanomaterials: Promises for improved tissue regeneration.
Nano Today 4, 66-80 .
Zhang, X., Prasad, S., Niyogi, S., Morgan, A., Ozkan, C.S., Ozkan, M., 2005. Guided neurite growth on patterned
carbon nanotubes. Sensors & Actuators: B. Chemical 106, 843-850 .
Zhang, X., Xin, N., Tong, L., Tong, X.-J., 2013. Electrical stimulation enhances peripheral nerve regeneration after
crush injury in rats. Molecular Medicine Reports 7, 1523-1527 .
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