Effect of triple Antibiotic paste and 2% chlorhexidine gel on shear bond strength of composite resin to dentin; an in vitro study
Journal Title: Caspian Journal of Dental Research - Year 2015, Vol 4, Issue 1
Abstract
Effect of triple Antibiotic paste and 2% chlorhexidine gel on shear bond strength of composite resin to dentin; an in vitro study
Authors and Affiliations
Maryam Zare Jahromi, Parvin Mirzakoucheki- Boroujeni, Sharareh Daneshpour, Mohammad Reza Saei
Histopathological evaluation of dental pulp of cat after using of sodium sulfonate in composite restorative treatment
Introduction: Previous researches showed that neutral soaps significantly increased bond strength and decreased microleakage of dentin bonding agents. The aim of this study was histopathological evaluation of the effect...
Awareness of care and importance of primary teeth among mothers in Yasuj 2017
Introduction: Healthy primary teeth are necessary for a child's physical and mental health. Increasing mothers’ awareness of the importance of these teeth is significant for the creation of healthy teeth in their childre...
Histologic evaluation of pulpal response to MTA and capsaicin in cats
Introduction: In direct pup capping, the exposed pulp is directly capped with a capping material to provoke a dentinal bridge formation to seal the exposed area.The aim of this study was to evaluate the pulpal response t...
Evaluation of quality and quantity of solid wastes in Babol Dental Faculty–North of Iran
Introduction: Dental wastes are a main part of urban solid wastes in each society and have pathogenic agents and toxic chemicals, which put health of patients, personnel and other referees to dental clinics in danger. Th...
Antimicrobial activity of three different endodontic sealers on the enterococcus faecalis and lactobacillus (in vitro)
Introduction: Growth and proliferation of the remaining microorganisms within the root canals may destroy the surrounding tissue of the root and leads to periapical lesion. Consequently, the complete elimination of micro...