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Can low-fusing glass application affect the marginal misfit and bond strength of Y-TZP crowns?
Antunes, Monize Carelli Felipe; Miranda, Jean Soares; Carvalho, Ronaldo Luís Almeida de; Carvalho, Rodrigo Furtado de; Kimpara, Estevão Tomomitsu; Assunção E Souza, Rodrigo Othávio de; Leite, Fabíola Pessôa Pereira.
  • Antunes, Monize Carelli Felipe; Universidade Federal de Juiz de Fora - UFJF. Department of Restorative Dentistry. Juiz de Fora. BR
  • Miranda, Jean Soares; Universidade Federal de Juiz de Fora - UFJF. Department of Restorative Dentistry. Juiz de Fora. BR
  • Carvalho, Ronaldo Luís Almeida de; Universidade Federal de Juiz de Fora - UFJF. Department of Restorative Dentistry. Juiz de Fora. BR
  • Carvalho, Rodrigo Furtado de; Universidade Federal de Juiz de Fora - UFJF. Department of Restorative Dentistry. Juiz de Fora. BR
  • Kimpara, Estevão Tomomitsu; Universidade Federal de Juiz de Fora - UFJF. Department of Restorative Dentistry. Juiz de Fora. BR
  • Assunção E Souza, Rodrigo Othávio de; Universidade Federal de Juiz de Fora - UFJF. Department of Restorative Dentistry. Juiz de Fora. BR
  • Leite, Fabíola Pessôa Pereira; Universidade Federal de Juiz de Fora - UFJF. Department of Restorative Dentistry. Juiz de Fora. BR
Braz. oral res. (Online) ; 32: e34, 2018. tab, graf
Article in English | LILACS | ID: biblio-889480
ABSTRACT
Abstract To evaluate the effect of different surface treatments on the marginal misfit and retentive strength between Y-TZP crowns and an epoxy resin. Forty (40) epoxy resin (G10) abutments (height 5mm, conicity 60, finish line large chamfer) with equal dimensions were milled and included in polyurethane to simulate the periodontal ligament. Next, 40 Y-TZP crowns (thickness 1mm) were milled (Cerec in Lab) and randomly divided into four groups (n=10) according to the surface treatment GS(glaze spray), GP(glaze powder/liquid), P(zirconia primer) and RS(tribochemical silica coating). The conditioned surfaces were cemented with dual self-adhesive cement, light cured and submitted to thermomechanical cycling (2x106, 100N, 4Hz, 5°/55°C). Marginal misfit was analyzed by a stereomicroscope and SEM. Retentive strength test was performed (1mm/min) until crown debonding. Glaze layer thickness was also performed to GS and GP groups. Marginal misfit data were analyzed by Kruskal Wallis and Dunn tests; one-way ANOVA and Tukey (5%) analyzed the tensile strength data. The marginal misfit of the GS (48.6±19.9μm) and GP (65.4±42.5μm) were statistically lower than the RS (96±62.9μm) and P (156±113.3μm) (p=0.001). The retentive strength of the GP (470.5±104.1N) and GS (416.8±170.2N) were similar to the P (342.1±109.7N), but statistically higher than those of the RS (208.9±110N). The GS and GP glaze layer was 11.64μm and 9.73μm respectively. Thus, glaze application promoted lower marginal discrepancy and higher retentive strength values than conventional techniques.
Subject(s)


Full text: Available Index: LILACS (Americas) Main subject: Yttrium / Zirconium / Dental Bonding / Dental Marginal Adaptation / Crowns / Epoxy Resins / Glass Language: English Journal: Braz. oral res. (Online) Journal subject: Dentistry Year: 2018 Type: Article Affiliation country: Brazil Institution/Affiliation country: Universidade Federal de Juiz de Fora - UFJF/BR

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Full text: Available Index: LILACS (Americas) Main subject: Yttrium / Zirconium / Dental Bonding / Dental Marginal Adaptation / Crowns / Epoxy Resins / Glass Language: English Journal: Braz. oral res. (Online) Journal subject: Dentistry Year: 2018 Type: Article Affiliation country: Brazil Institution/Affiliation country: Universidade Federal de Juiz de Fora - UFJF/BR