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Effects of different implant-abutment connections on micromotion and stress distribution: Prediction of microgap formation

机译:不同种植体-基台连接对微动和应力分布的影响:微间隙形成的预测

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Objectives: The aim of this study was to analyse micromotion and stress distribution at the connections of implants and four types of abutments: internal hexagonal, internal octagonal, internal conical and trilobe. Methods: A three dimensional (3D) model of the left posterior mandible was reconstructed from medical datasets. Four dental implant systems were designed and analysed independently in a virtual simulation of a first molar replacement. Material properties, contact properties, physiological loading and boundary conditions were assigned to the 3D model. Statistical analysis was performed using one-way analysis of variance (ANOVA) with a 95% confidence interval and Tukey's Honestly Significant Difference (HSD) multiple comparison test. Results: The internal hexagonal and octagonal abutments produced similar patterns of micromotion and stress distribution due to their regular polygonal design. The internal conical abutment produced the highest magnitude of micromotion, whereas the trilobe connection showed the lowest magnitude of micromotion due to its polygonal profile. Conclusions: Non-cylindrical abutments provided a stable locking mechanism that reduced micromotion, and therefore reduced the occurrence of microgaps. However, stress tends to concentrate at the vertices of abutments, which could lead to microfractures and subsequent microgap formation.
机译:目的:本研究的目的是分析植入物与四种基台连接处的微动和应力分布:内部六边形,内部八边形,内部圆锥形和三叶形。方法:从医学数据集重建左后下颌骨的三维(3D)模型。在第一个臼齿置换的虚拟模拟中独立设计和分析了四个牙科植入系统。将材料特性,接触特性,生理负荷和边界条件分配给3D模型。使用具有95%置信区间的单方差分析(ANOVA)和Tukey的诚实显着差异(HSD)多重比较测试进行统计分析。结果:内部的六角形和八角形基台由于规则的多边形设计而产生了相似的微运动和应力分布模式。内部圆锥形基台产生最高的微动幅度,而三叶形连接由于其多边形轮廓而显示出最低的微动幅度。结论:非圆柱基台提供了稳定的锁定机制,可减少微动,从而减少微间隙的发生。但是,应力倾向于集中在基台的顶点,这可能导致微裂缝和随后的微间隙形成。

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