首页> 外文期刊>The Journal of oral implantology >Effects of Different Abutment Connection Designs on the Stress Distribution Around Five Different Implants: A 3-Dimensional Finite Element Analysis
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Effects of Different Abutment Connection Designs on the Stress Distribution Around Five Different Implants: A 3-Dimensional Finite Element Analysis

机译:不同基台连接设计对五种不同种植体周围应力分布的影响:三维有限元分析

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摘要

The stability of the bone-implant interface is required for the long-term favorable clinical outcome of implant-supported prosthetic rehabilitation. The implant failures that occur after the functional loading are mainly related to biomechanical factors. Micro movements and vibrations due to occlusal forces can lead to mechanical complications such as loosening of the screw and fractures of the abutment or implants. The aim of this study was to investigate the strain distributions in the connection areas of different implant-abutment connection systems under similar loading conditions. Five different implant-abutment connection designs from 5 different manufacturers were evaluated in this study. The investigation was performed with software using the finite element method. The geometrical modeling of the implant systems was done with CATIA virtual design software. The MSC NASTRAN solver and PATRAN postprocessing program were used to perform the linear static solution. According to the analysis, the implant-abutment connection system with external hexagonal connection showed the highest strain values, and the internal hexagonal implant-abutment connection system showed the lowest strain values. Conical + internal hexagonal and screw-in implant abutment connection interface is more successful than other systems in cases with increased vertical dimension, particularly in the posterior region.
机译:骨-植入物界面的稳定性是植入物支持的假体康复的长期良好临床结果所必需的。功能加载后发生的植入物故障主要与生物力学因素有关。由于咬合力引起的微小运动和振动会导致机械复杂性,例如螺钉松动以及基台或植入物断裂。这项研究的目的是研究在相似载荷条件下不同种植体-基台连接系统的连接区域中的应变分布。这项研究评估了来自5个不同制造商的5种不同的种植体-基台连接设计。使用软件使用有限元方法进行研究。植入物系统的几何建模是使用CATIA虚拟设计软件完成的。 MSC NASTRAN解算器和PATRAN后处理程序用于执行线性静态解。根据分析,外部六角形种植体-基台连接系统显示出最高的应变值,而内部六角形种植体-基台连接系统显示出最低的应变值。在垂直尺寸增加的情况下,尤其是在后部区域,锥形+内部六角形和旋入式种植体基台连接接口比其他系统更成功。

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