Aim: The aim of this study was to assess if the curing mode and the etching mode could affect the push-out bond strength of different post cementation systems using two universal adhesives. Materials and methods: A total of 100 single-rooted teeth were divided into Prime & Bond Elect (PBE), Prime & Bond Active (PBA), and Prime & Bond XP (PBXP) as a control. The PBE, PBA, and PBXP were used in the self-etch (SE) and etch and rinse (E&R) mode. Post cementation was performed using Core X flow used in dark-cure and in light-cure. Data were analyzed using the one-way ANOVA test and post hoc Bonferroni and Dunnet tests. The Student's t test was performed to find significance between two independent groups. Results: Bond strength w...
AIM OF THE STUDY: To evaluate the push-out bond strength of two different fiber-reinforced composi...
Purpose: The study evaluates the behavior of different adhesive systems and resin cements in fiber p...
Purpose: To investigate the micro push-out bond strength of individually formed (everStick Post) and...
Aim: The aim of this study was to assess if the curing mode and the etching mode could affect the pu...
Aim: The push out bond strength of a fiber post system was evaluated and compared using a self-etch ...
Objective: The aim of this study was to evaluate the push-out bond strength of fiber posts used in t...
Objectives: This study evaluated the bond strength of luting systems for bonding glass fiber posts t...
Aim: This study was aimed to evaluate and compare the pull-out bond strength of fiber post using gla...
Aim: The aim of this study was to investigate the effect of three different bonding techniques on th...
The adhesion of fiber posts luted with simplified adhesive systems has been a matter of great intere...
This in vitro study evaluated the tensile bond strength of glass fiber posts (Reforpost - Angelus-Br...
Glass fiber post cementation procedures have undergone significant development. Relining the post wi...
PURPOSE: To evaluate push-out bond strength (PBS) and interfacial nanoleakage (NL) of adhesively lut...
Aim: The purpose of this study was to evaluate the push-out bond strength of traditional glass fiber...
Rao TR. Comparative evaluation of push out the bond strength of a fibre post system using four diffe...
AIM OF THE STUDY: To evaluate the push-out bond strength of two different fiber-reinforced composi...
Purpose: The study evaluates the behavior of different adhesive systems and resin cements in fiber p...
Purpose: To investigate the micro push-out bond strength of individually formed (everStick Post) and...
Aim: The aim of this study was to assess if the curing mode and the etching mode could affect the pu...
Aim: The push out bond strength of a fiber post system was evaluated and compared using a self-etch ...
Objective: The aim of this study was to evaluate the push-out bond strength of fiber posts used in t...
Objectives: This study evaluated the bond strength of luting systems for bonding glass fiber posts t...
Aim: This study was aimed to evaluate and compare the pull-out bond strength of fiber post using gla...
Aim: The aim of this study was to investigate the effect of three different bonding techniques on th...
The adhesion of fiber posts luted with simplified adhesive systems has been a matter of great intere...
This in vitro study evaluated the tensile bond strength of glass fiber posts (Reforpost - Angelus-Br...
Glass fiber post cementation procedures have undergone significant development. Relining the post wi...
PURPOSE: To evaluate push-out bond strength (PBS) and interfacial nanoleakage (NL) of adhesively lut...
Aim: The purpose of this study was to evaluate the push-out bond strength of traditional glass fiber...
Rao TR. Comparative evaluation of push out the bond strength of a fibre post system using four diffe...
AIM OF THE STUDY: To evaluate the push-out bond strength of two different fiber-reinforced composi...
Purpose: The study evaluates the behavior of different adhesive systems and resin cements in fiber p...
Purpose: To investigate the micro push-out bond strength of individually formed (everStick Post) and...