969 resultados para Fratura de prótese
Falhas e complicações com o uso de prótese parcial removível inferior de extremidade livre bilateral
Resumo:
Aim: To determine the frequency and type of complications related to removable partial denture (RPD) less, Kennedy Class I, over time . Materials and Methods: This observational study consisted of a sample of 65 users PPR lower arches in Kennedy Class I and dentures, rehabilitated in the Department of Dentistry, Federal University of Rio Grande do Norte (UFRN). Patients were followed through periodic controls during periods of 60 days, 6 months and 1 year from installation. After the first year of control had other returns annually. The occurrence of complications or prosthetic failure was observed and recorded in a specific clinical record over 39 months. The patterns of failures observed were classified in the following situations: occurrence of traumatic ulcers after 2 months of installation, lack of retention, fracture or caries in the rest, fracture or dislocation of the artificial teeth, the larger connector fracture, fracture clip fracture support, poor support (need to reline the denture) and prosthesis fracture. Results: The incidence of complications was low frequency, being higher in the second year of use of the prosthesis. Among the complications that occurred more is the loss of retention (31.57%). Failures more severe and difficult to solve as the fracture elements of the metal structure of the PPR had low occurrence and were represented by only one case of the larger connector (5.3%) fractures. Conclusion: Removable partial dentures mandibular free end opposing of the conventional dentures have a low complication rate after 39 months of use when subjected to periodic controls
Resumo:
O sucesso dos implantes osseointegrados é comprovado cientificamente e com isso, veio outras preocupações como a de se solucionar esteticamente e funcionalmente o tratamento restaurador, tendo como escolha na maioria das vezes a confecção de coroas metalocerâmicas ou metaloplásticas. Este trabalho teve como objetivo comparar a resistência à fratura por compressão axial e avaliar o tipo de fratura de 30 coroas unitárias sobre implante do primeiro pré-molar superior, confeccionadas com diferentes infraestruturas metálicas (infra-estruturas enceradas e fundidas em níquel-cromo sobre pilares UCLA calcináveis e infra-estruturas representadas por pilares UCLA provisórios pré-fabricados em titânio), ambos restaurados com resina composta laboratorial, sendo que, as restaurações totais em resina compostas laboratoriais confeccionadas sobre o pilar UCLA pré-fabricado em titânio foram reforçadas internamente com fibras de vidro. Não foram encontradas diferenças estatisticamente significantes entre as médias tanto de resistência à fratura quanto da deformação máxima de rompimento entre os grupos (p= 0.5812 e p= 0.1743 respectivamente). As fraturas apresentadas pelos espécimes com infra-estruturas fundidas em níquel-cromo com e sem retenção apresentaram em sua totalidade fraturas parciais adesivas enquanto que no grupo com infra-estruturas com fibras-de-vidro o tipo de fratura foi a parcial coesiva. A resina composta laboratorial suporta forças acima das encontradas na mastigação indiferente do tipo de reforço utilizado, podendo ser indicada para confecção de próteses unitárias sobre implante.
Resumo:
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
Estudo do desempenho em fadiga do componente tibial metálico de um modelo de prótese total de joelho
Resumo:
A substituição total de uma articulação de joelho é uma técnica amplamente usada para corrigir os danos irreversíveis na juntas originais, causadas por patologias como osteoartrite e artrite reumatóide. Com o aumento número de pacientes jovens e mais ativos, a evolução na técnica da substituição da articulação total de joelho visando desempenho de longo prazo passa a ser uma demanda crítica. Portanto, na tentativa de evitar as falhas prematuras e prolongar a vida em serviço como um todo, as modificações na bandeja tibial podem produzir erros fundamentais. O design da bandeja tibial é um importante fator, porque a sua fratura pode ocorrer em função de elementos geométricos da mesma, como raios de concordância e cantos vivos. A escolha do material e do processo de fabricação também são importantes. No tocante a rota de fabricação, pode ser visto que as ligas forjadas tem o maior limite de fadiga, se comparado com as obtidas pelo processo de fundição. Entretanto, a combinação das técnicas de desenho assistido por computador (CAD), engenharia assistida por computador (CAE) e manufatura assistida por computador (CAM) podem ser uma solução rápida e barata para alcançar melhores características das bandejas tibiais. Contudo, testes pré-clínicos devem ser executados para garantir que as bandejas tibiais não falharão prematuramente devido à fadiga. As técnicas de metalografia, microdureza e espectrometria foram empregadas neste trabalho com o objetivo de caracterizar metalurgicamente a liga de aço inoxidável atualmente empregada. A rugosidade superficial foi avaliada, assim como o número de ciclos para a iniciação das trincas. Com a utilização do método de elementos finitos, verificou-se o ponto de maior tensão e, aliado ao estudo de fractografia, foi determinado o modo de falha Os resultados indicaram que o material atualmente empregado não está em conformidade com todos os requisitos das normas vigentes, de forma que um material alternativo é sugerido. Com o objetivo de melhorar a resistência à fadiga sem apresentar problemas de ordem clínica, cinco geometrias foram propostas e os resultados da análise de tensões pelo método de elementos finitos indicaram um grande potencial de aumento da vida em fadiga.
Resumo:
Pós-graduação em Reabilitação Oral - FOAR
Resumo:
Pós-graduação em Odontologia Restauradora - ICT
Resumo:
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
Resumo:
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
Resumo:
Patients with agenesis of maxillary lateral incisor must have in your planning functional and aesthetic considerations, important to the success of the treatment, regardless of whether the choice of treatment is closing or opening and maintenance of space for rehabilitation with prosthesis. This choice will depend on factors such as skeletal and tooth structure and profile. Children and adolescents are the group of individuals most exposed to trauma and fracture of the maxillary lateral incisor due to the activities they perform. Proper diagnosis and good treatment are essential to the success of the treatment. This article aims to report a case of agenesis of the maxillary lateral incisor along with the involvement of a root fracture of the maxillary central incisor. The orthodontic treatment was successfully finished with a favorable prognosis for the fractured incisor to stay in a esthetic and functional position.
Resumo:
The use of different methods and materials should be considered during the planning of implant-supported prostheses. Complications such as fractures of the acrylic resin base, wear and fracture of teeth can occur frequently, creating the need for careful planning for each patient, which can make the selection of the type of treatment more complex. Thus, this article describes the oral rehabilitation of a completely edentulous patient with bimaxillary fixed implant-supported prosthesis, with complaints on aesthetics, loss of vertical dimension and fracture of acrylic resin teeth of the upper arch. After the restoration of vertical dimension, his dentures were replaced with new bimaxillary implant-supported fixed prostheses, ceramic and acrylic resin were used as veneering material for maxilla and mandible, respectively. At the end of the treatment, the patient received bimaxillary flat occlusal splints to protect the teeth and implants of possible parafunctional habits. The approach for the treatment allowed a quick and effective resolution, with aesthetic and functional outcomes very favorable for the patient.
Resumo:
Pós-graduação em Odontologia Restauradora - ICT
Resumo:
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
Resumo:
Pós-graduação em Odontologia Restauradora - ICT
Resumo:
The aim of this study was to evaluate the behavior of reinforced composites with polyamide 6 fibers aligned (6000 rpm) and alignment (120 rpm) with or without CNT using the flexural strength test. After preparation of nanofibers aligned nylon 6 (6000 rpm) and alignment (120 rpm) with and without incorporation of nanotube carbon by the method of electrospinning, were performed one control group (n = 10) and 4 experimental groups (n = 40) G1: Control (just resin Charisma - Heraeus Kulzer) ;G2 Resin + N6 aligned (6000 rpm) + CNT; G3:Resin + N6 alignment (120 rpm) + CNT; G4: Resin + aligned ( 6000 rpm) N6. G5: Resin + N6 alignment (120 rpm). The fibers were cut to the dimensions of 0,3 x 15 mm and were applied an adhesive at the surface (Single Bond 2) for 5 min and cured. In the matrix, was added resin in the proximal box (Charisma A2, Heraeus Kulzer) and cured for 40 s. (power 1100 mW / cm²). A first layer of resin and on the resin was deposited. The resin layers specimens were light irradiated with three overlapping exposures delivered. For each resin layer were light irradiated for 40 sec. The samples were tested with a cross-speed of 1 mm / min, and a 50 Kgf at Universal testing machine (EMIC mod.DL2000). The Dunnet test showed that only the nanotube group was significantly different from the control group. The ANOVA two-way indicates that the nanotube factor was statistically significant (p < 0.05) and there is no interaction between factors and orientation nanotube. The presence of nanotube showed lower fracture resistance values for aligned and unaligned groups. The results of this study showed that the orientation of the fibers does not influence the strength of composite resins and the incorporation of nylon nanofibers with carbon nanotubes decreased the fracture resistance values. The presence of the fibers has not been able to improve the strength of the material in any of the...
Resumo:
The aim of this study was to evaluate the behavior of reinforced composites with polyamide 6 fibers aligned (6000 rpm) and alignment (120 rpm) with or without CNT using the flexural strength test. After preparation of nanofibers aligned nylon 6 (6000 rpm) and alignment (120 rpm) with and without incorporation of nanotube carbon by the method of electrospinning, were performed one control group (n = 10) and 4 experimental groups (n = 40) G1: Control (just resin Charisma - Heraeus Kulzer) ;G2 Resin + N6 aligned (6000 rpm) + CNT; G3:Resin + N6 alignment (120 rpm) + CNT; G4: Resin + aligned ( 6000 rpm) N6. G5: Resin + N6 alignment (120 rpm). The fibers were cut to the dimensions of 0,3 x 15 mm and were applied an adhesive at the surface (Single Bond 2) for 5 min and cured. In the matrix, was added resin in the proximal box (Charisma A2, Heraeus Kulzer) and cured for 40 s. (power 1100 mW / cm²). A first layer of resin and on the resin was deposited. The resin layers specimens were light irradiated with three overlapping exposures delivered. For each resin layer were light irradiated for 40 sec. The samples were tested with a cross-speed of 1 mm / min, and a 50 Kgf at Universal testing machine (EMIC mod.DL2000). The Dunnet test showed that only the nanotube group was significantly different from the control group. The ANOVA two-way indicates that the nanotube factor was statistically significant (p < 0.05) and there is no interaction between factors and orientation nanotube. The presence of nanotube showed lower fracture resistance values for aligned and unaligned groups. The results of this study showed that the orientation of the fibers does not influence the strength of composite resins and the incorporation of nylon nanofibers with carbon nanotubes decreased the fracture resistance values. The presence of the fibers has not been able to improve the strength of the material in any of the...