ThesisComparative study of the push-out bond strength and adaptation of two root-end filling materials : An in vitro study
ThesisComparative study of the push-out bond strength and adaptation of two root-end filling materials : An in vitro study
ThesisThe evaluation of adaptability, shear bond strength, biocomapatibility and antibacterial effect, of three resin based sealers : An in vitro study
ThesisThe evaluation of adaptability, shear bond strength, biocomapatibility and antibacterial effect, of three resin based sealers : An in vitro study
ThesisNanoleakage and shear bond strength of three resin based root canal sealers : A comparative study
ThesisNanoleakage and shear bond strength of three resin based root canal sealers : A comparative study
ThesisFracture resistance of roots obturated with epoxy resin–based, mineral trioxide aggregate–based, and bioceramic root canal sealers : A comparative in vitro study
ThesisFracture resistance of roots obturated with epoxy resin–based, mineral trioxide aggregate–based, and bioceramic root canal sealers : A comparative in vitro study
ThesisCytotoxicity and bond strength of two single cone obturation systems : A comparative in-vitro study
ThesisCytotoxicity and bond strength of two single cone obturation systems : A comparative in-vitro study
ThesisEvaluation of the sealing ability, surface adaptability and antibacterial efficacy of three resin based root canal sealers : An in vitro study
ThesisEvaluation of the sealing ability, surface adaptability and antibacterial efficacy of three resin based root canal sealers : An in vitro study
ThesisA comparative study of the sealing ability and biocompatibility of new modified glass-ionomer/collagen hybrid versus mineral trioxide aggregate and glass ionomer as root-end filling materials
ThesisA comparative study of the sealing ability and biocompatibility of new modified glass-ionomer/collagen hybrid versus mineral trioxide aggregate and glass ionomer as root-end filling materials
ThesisEvaluation of bond strength, surface adaptation,and antibacterial effect of a newly developedbioceramic–based sealer “Smart paste bio” : An in vitro study
ThesisEvaluation of bond strength, surface adaptation,and antibacterial effect of a newly developedbioceramic–based sealer “Smart paste bio” : An in vitro study
ThesisEvaluation of the apical sealing ability and marginal adaptation of bone cement and mineral trioxide aggregate as root-end filling materials : A comparative in vitro-study
ThesisEvaluation of the apical sealing ability and marginal adaptation of bone cement and mineral trioxide aggregate as root-end filling materials : A comparative in vitro-study