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Issue DateTitleAuthor(s)
Aug-2013Nanohydroxyapatite Incorporated Electrospun Polycaprolactone/Polycaprolactone-Polyethyleneglycol- Polycaprolactone Blend Scaffold for Bone Tissue Engineering ApplicationsRemya, KR; Joseph, J; Susan, M; John, A; Varma, HK; Ramesh, P
Nov-2013In vitro evaluation of bioactive strontium-based ceramic with rabbit adipose-derived stem cells for bone tissue regeneration.Mohan, BG; Suresh Babu, S; Varma, HK; John, A
2008Biodegradation and cytocompatibility studies of a triphasic ceramic coated porous hydroxyapatite for bone substitute applicationsJohn, A; Nair, MB; Varma, HK; Bernhardt, A; Gelinsky, M
2011Osteogenesis of a bioactive ceramic calcium phospho silicate composite system in goat femur defect.John, A; Mani, S; Sandeep, G; Babu, SS; Lal, AV; Varma, HK
2006Cell interaction studies with novel Bioglass coated Hydroxyapatite porous blocksNair, MB; Varma, HK; Kumary, TV; Babu, SS; John, A
2011. Tissue engineered triphasic ceramic coated hydroxyapatite induces bone formation and vascularisation at an extraskeletal site in a rat modelNair, MB; Varma, HK; Mohanan, PV; John, A
2013Strontium Calcium Phosphate for the Repair of Leporine (Oryctolagus cuniculus) Ulna Segmental DefectMohan, BG; Shenoy, SJ; Babu, SS; Varma, HK; John, A
2006Characterisation of novel bioactive glass coated hydroxyapatite granules in correlation with in vitro and in vivo studiesSandeep, G; Varma, HK; Kumary, TV; Babu, SS; John, A
2005Cytocompatibility Studies of a Novel Bioactive Glass Coated Porous Hydroxyapatite Bioceramic for Use as a Bone SubstituteJohn, A; Varma, HK; Kumari, TV; Nisha, VR; Narayanan, D
2002Bone growth response with porous hydroxyapatite granules in a critical sized lapine tibial-defect modelJohn, A; Abiraman, S; Varma, HK; Kumar, TV; Umashankar, PR