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异常功能负荷与修复体连接对应力分布的影响:三维有限元分析

Influence of parafunctional loading and prosthetic connection on stress distribution: a 3D finite element analysis.

作者信息

Torcato Leonardo Bueno, Pellizzer Eduardo Piza, Verri Fellippo Ramos, Falcón-Antenucci Rosse Mary, Santiago Júnior Joel Ferreira, de Faria Almeida Daniel Augusto

机构信息

Postgraduate student, Department of Dental Materials and Prosthodontics, State University of Paulista, Araçatuba Dental School, São Paulo, Brazil.

Adjunct Professor, Department of Dental Materials and Prosthodontics, State University of Paulista, Araçatuba Dental School, São Paulo, Brazil.

出版信息

J Prosthet Dent. 2015 Nov;114(5):644-51. doi: 10.1016/j.prosdent.2015.04.018. Epub 2015 Jul 14.

Abstract

STATEMENT OF PROBLEM

Clinicians should consider parafunctional occlusal load when planning treatment. Prosthetic connections can reduce the stress distribution on an implant-supported prosthesis.

PURPOSE

The purpose of this 3-dimensional finite element study was to assess the influence of parafunctional loading and prosthetic connections on stress distribution.

MATERIAL AND METHODS

Computer-aided design software was used to construct 3 models. Each model was composed of a bone and an implant (external hexagon, internal hexagon, or Morse taper) with a crown. Finite element analysis software was used to generate the finite element mesh and establish the loading and boundary conditions. A normal force (200-N axial load and 100-N oblique load) and parafunctional force (1000-N axial and 500-N oblique load) were applied. Results were visualized as the maximum principal stress. Three-way analysis of variance and Tukey test were performed, and the percentage of contribution of each variable to the stress concentration was calculated from sum-of squares-analysis.

RESULTS

Stress was concentrated around the implant at the cortical bone, and models with the external hexagonal implant showed the highest stresses (P<.001). Oblique loads produced high tensile stress concentrations on the site opposite the load direction.

CONCLUSIONS

Internal connection implants presented the most favorable biomechanical situation, whereas the least favorable situation was the biomechanical behavior of external connection implants. Parafunctional loading increased the magnitude of stress by 3 to 4 times.

摘要

问题陈述

临床医生在制定治疗计划时应考虑异常功能咬合负荷。修复体连接可减少种植体支持修复体上的应力分布。

目的

本三维有限元研究的目的是评估异常功能负荷和修复体连接对应力分布的影响。

材料与方法

使用计算机辅助设计软件构建3个模型。每个模型由一块骨组织、一个种植体(外六角形、内六角形或莫氏锥度)和一个牙冠组成。使用有限元分析软件生成有限元网格并建立加载和边界条件。施加垂直力(200 N轴向载荷和100 N斜向载荷)和异常功能力(1000 N轴向和500 N斜向载荷)。结果以最大主应力进行可视化显示。进行三因素方差分析和Tukey检验,并通过平方和分析计算每个变量对应力集中的贡献率。

结果

应力集中在皮质骨的种植体周围,外六角形种植体的模型显示出最高应力(P<0.001)。斜向载荷在与载荷方向相反的部位产生高拉应力集中。

结论

内连接种植体呈现出最有利的生物力学情况,而最不利的情况是外连接种植体的生物力学行为。异常功能负荷使应力大小增加3至4倍。

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