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Influence of different cantilever extensions and glass or polyaramid reinforcement fibers on fracture strength of implant-supported temporary fixed prosthesis
Colán Guzmán, Paola; Freitas, Fernando Furtado Antunes de; Ferreira, Paulo Martins; Freitas, César Antunes de; Reis, kátia Rodrigues.
Afiliação
  • Colán Guzmán, Paola; University of São Paulo. Bauru School of Dentistry. Department of Prosthodontics. Bauru. BR
  • Freitas, Fernando Furtado Antunes de; University of São Paulo. Bauru School of Dentistry. Department of Prosthodontics. Bauru. BR
  • Ferreira, Paulo Martins; University of São Paulo. Bauru School of Dentistry. Department of Prosthodontics. Bauru. BR
  • Freitas, César Antunes de; University of São Paulo. Bauru School of Dentistry. Department of Operative Dentistry, Endodontics and Dental Materials. Bauru. BR
  • Reis, kátia Rodrigues; University of São Paulo. Bauru School of Dentistry. Department of Prosthodontics. Bauru. BR
J. appl. oral sci ; J. appl. oral sci;16(2): 111-115, Mar.-Apr. 2008. ilus, tab
Article em En | LILACS, BBO | ID: biblio-873411
Biblioteca responsável: BR1.1
Localização: BR28.1
ABSTRACT
In long-term oral rehabilitation treatments, resistance of provisional crowns is a very important factor, especially in cases of an extensive edentulous distal space. The aim of this laboratorial study was to evaluate an acrylic resin cantilever-type prosthesis regarding the flexural strength of its in-balance portion as a function of its extension variation and reinforcement by two types of fibers (glass and polyaramid), considering that literature is not conclusive on this subject. Each specimen was composed by 3 total crowns at its mesial portion, each one attached to an implant component (abutment), while the distal portion (cantilever) had two crowns. Each specimen was constructed by injecting acrylic resin into a two-part silicone matrix placed on a metallic base. In each specimen, the crowns were fabricated with either acrylic resin (control group) or acrylic resin reinforced by glass (Fibrante, Angelus) or polyaramide (Kevlar 49, Du Pont) fibers. Compression load was applied on the cantilever, in a point located 7, 14 or 21 mm from the distal surface of the nearest crown with abutment, to simulate different extensions. The specimen was fixed on the metallic base and the force was applied until fracture in a universal test machine. Each one of the 9 sub-groups was composed by 10 specimens. Flexural strength means (in kgf) for the distances of 7, 14 and 21 mm were, respectively, 28.07, 8.27 and 6.39 for control group, 31.89, 9.18 and 5.16 for Kevlar 49 and 30.90, 9.31 and 6.86 for Fibrante. Data analysis ANOVA showed statistically significant difference (p<0.05) only regarding cantilever extension. Tukey’s test detected significantly higher flexural strength for the 7 mm-distance, followed by 14 and 21 mm. Fracture was complete only on specimens of non-reinforced groups.
Assuntos
Texto completo: 1 Base de dados: BBO / LILACS Assunto principal: Resinas Acrílicas / Prótese Dentária Fixada por Implante / Restauração Dentária Temporária Idioma: En Ano de publicação: 2008 Tipo de documento: Article
Texto completo: 1 Base de dados: BBO / LILACS Assunto principal: Resinas Acrílicas / Prótese Dentária Fixada por Implante / Restauração Dentária Temporária Idioma: En Ano de publicação: 2008 Tipo de documento: Article