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1.
J. appl. oral sci ; 24(2): 114-120, Mar.-Apr. 2016. tab, graf
Artigo em Inglês | LILACS | ID: lil-779907

RESUMO

ABSTRACT Because many mechanical variables are present in the oral cavity, the proper load transfer between the prosthesis and the bone is important for treatment planning and for the longevity of the implant-supported fixed partial denture. Objectives To verify the stress generated on the peri-implant area of cantilevered implant-supported fixed partial dentures and the potential effects of such variable. Material and Methods A U-shaped polyurethane model simulating the mandibular bone containing two implants (Ø 3.75 mm) was used. Six groups were formed according to the alloy’s framework (CoCr or PdAg) and the point of load application (5 mm, 10 mm and 15 mm of cantilever arm). A 300 N load was applied in pre-determined reference points. The tension generated on the mesial, lingual, distal and buccal sides of the peri-implant regions was assessed using strain gauges. Results Two-way ANOVA and Tukey statistical tests were applied showing significant differences (p<0.05) between the groups. Pearson correlation test (p<0.05) was applied showing positive correlations between the increase of the cantilever arm and the deformation of the peri-implant area. Conclusions This report demonstrated the CoCr alloy shows larger compression values compared to the PdAg alloy for the same distances of cantilever. The point of load application influences the deformation on the peri-implant area, increasing in accordance with the increase of the lever arm.


Assuntos
Ligas de Cromo/química , Prótese Dentária Fixada por Implante/métodos , Ligas Dentárias/química , Análise do Estresse Dentário , Paládio/química , Valores de Referência , Prata/química , Estresse Mecânico , Teste de Materiais , Reprodutibilidade dos Testes , Análise de Variância , Planejamento de Prótese Dentária , Força Compressiva , Torque , Prótese Parcial Fixa , Módulo de Elasticidade
2.
J. appl. oral sci ; 22(3): 209-217, May-Jun/2014. tab, graf
Artigo em Inglês | LILACS, BBO | ID: lil-711709

RESUMO

Knowing how stresses are dissipated on the fixed implant-supported complex allows adequate treatment planning and better choice of the materials used for prosthesis fabrication. Objectives: The aim of this study was to evaluate the deformation suffered by cantilevered implant-supported fixed prostheses frameworks cast in silver-palladium alloy and coated with two occlusal veneering materials: acrylic resin or porcelain. Material and Methods: Two strain gauges were bonded to the inferior surface of the silver-palladium framework and two other were bonded to the occlusal surface of the prosthesis framework covered with ceramic and acrylic resin on each of its two halves. The framework was fixed to a metallic master model and a 35.2 N compression force was applied to the cantilever at 10, 15 and 20 mm from the most distal implant. The measurements of deformation by compression and tension were obtained. The statistical 2-way ANOVA test was used for individual analysis of the experiment variables and the Tukey test was used for the interrelation between all the variables (material and distance of force application). Results: The results showed that both variables had influence on the studied factors (deformation by compression and tension). Conclusion: The ceramic coating provided greater rigidity to the assembly and therefore less distortion compared with the uncoated framework and with the resin-coated framework. The cantilever arm length also influenced the prosthesis rigidity, causing higher deformation the farther the load was applied from the last implant. .


Assuntos
Resinas Acrílicas/química , Ligas Dentárias/química , Porcelana Dentária/química , Planejamento de Prótese Dentária , Prótese Dentária Fixada por Implante , Facetas Dentárias , Análise de Variância , Força Compressiva , Técnica de Fundição Odontológica , Análise do Estresse Dentário , Teste de Materiais , Paládio/química , Valores de Referência , Reprodutibilidade dos Testes , Prata/química , Propriedades de Superfície , Resistência à Tração , Fatores de Tempo
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