Items where Author is "Webster, T J"
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ArticleGupta, Siddhi and Webster, T J and Sinha, Arvind (2020) Correction to: Evolution of PVA gels prepared without crosslinking agents as a cell adhesive surface. Gupta S, Webster TJ, Sinha A. J Mater Sci Mater Med. 2020 Jul 21;31(8):63. doi: 10.1007/s10856-020-06399-1. PMID: 32696134. Journal of Materials Science - Materials in Medicine, 31(8) (IF-2.489). p. 63. Kumari, D and Sheikh, L and Bhattacharya, S and Webster, T J and Nayar, S (2017) Two-dimensional collagen-graphene as colloidal templates for biocompatible inorganic nanomaterial synthesis. International Journal of Nanomedicine, 12 (IF-4.300). pp. 3605-3616. Shi, D and Bhattacharya, S and Nayar, S and Webster, T J (2016) Optimizing superparamagnetic iron oxide nanoparticles as drug carriers using an in vitro blood-brain barrier model. International Journal Of Nanomedicine, 11 (IF- 4.3). Shi, D and Sun, L L and Mi, G J and Sheikh, Lubna and Bhattacharya, S and Nayar, S and Webster, T J (2014) Controlling ferrofluid permeability across the blood-brain barrier model. Nanotechnology, 25(7) (IF-3.672). Bhattacharya, S and Dhar, S and Das, S K and Ganguly, Ranjan and Webster, T J and Nayar, S (2014) Colloidal graphite/graphene nanostructures using collagen showing enhanced thermal conductivity. International Journal of Nanomedicine, 9 (IF-4.195). pp. 1287-1298. Hoff, Dan and Sheikh, Lubna and Bhattacharya, S and Nayar, S and Webster, T J (2013) Comparison study of ferrofluid and powder iron oxide nanoparticle permeability across the blood-brain barrier. International Journal of Nanomedicine, 8(1) (IF-3.463). pp. 703-710. Gupta, Siddhi and Webster, T J and Sinha, Arvind (2011) Evolution of PVA gels prepared without crosslinking agents as a cell adhesive surface. Journal of Materials Science:Materials in Medicine, 22 (7). pp. 1763-1774. |