Efeito de diferentes tratamentos de superfície em pinos de fibra de vidro fresados (CAD/CAM) na adesão ao canal radicular
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Universidade Estadual de Ponta Grossa
Abstract
The objective of this research was to evaluate the effect of different surface treatments
on milled fiberglass posts through the CAD/CAM system on their adhesion to the root
canal. Forty-eight single-rooted permanent teeth were selected, with their crowns
removed below the cement-enamel junction, and their roots were endodontically
treated. Subsequently, the canals were prepared for the subsequent cementation of
the fiberglass posts (FGP), which were produced from canal molds through the
CAD/CAM system. The milled fiberglass posts were randomly divided into four groups
(n = 12) according to the surface treatment of the posts: no treatment (control), 70%
alcohol, 35% hydrogen peroxide, and aluminum oxide (Al2O3) blasting. Subsequently,
a bonding agent, silane (Monobond N, Ivoclar Vivadent), was applied to all groups. In
each group, 2 randomly selected milled PFVs were qualitatively evaluated through
scanning electron microscopy (SEM). In all groups, the milled posts were cemented
with self-adhesive resin cement (RelyX U200, 3M ESPE), and six specimens (slices)
were obtained from each root, which were tested for push-out bond strength. The
obtained data was subjected to two-way ANOVA and Tukey's post-test (α = 0.05). It
could be observed that the 70% alcohol treated group obtained statisticaly superior BS
results over the other groups, the hydrogen peroxide and sandblasting groups with
average results and the isolated silane aplication was statisticaly below average. It
could be concluded that the 70% alcohol aplication followed by surface FGP milled
silanization is the best option to increase the adhesion on the root canal dentin.
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RODRIGUES, Rafaela Caroline. Efeito de diferentes tratamentos de superfície em pinos de fibra de vidro fresados (CAD/CAM) na adesão ao canal radicular. 2024. Dissertação (Mestrado em Odontologia) - Universidade Estadual de Ponta Grossa, Ponta Grossa, 2024.
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