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首页> 外文期刊>Journal of Periodontology >Influences of internal tapered abutment designs on bone stresses around a dental implant: three-dimensional finite element method with statistical evaluation.
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Influences of internal tapered abutment designs on bone stresses around a dental implant: three-dimensional finite element method with statistical evaluation.

机译:内部锥形基台设计对牙种植体周围骨应力的影响:具有统计评估的三维有限元方法。

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BACKGROUND: The aim of this study is to determine the effects of various designs of internal tapered abutment joints on the stress induced in peri-implant crestal bone by using the three-dimensional finite element method and statistical analyses. METHODS: Thirty-six models with various internal tapered abutment-implant interface designs including different abutment diameters (3.0, 3.5, and 4.0 mm), connection depths (4, 6, and 8 mm), and tapers (2 degrees , 4 degrees , 6 degrees , and 8 degrees ) were constructed. A force of 170 N was applied to the top surface of the abutment either vertically or 45 degrees obliquely. The maximum von Mises bone-stress values in the crestal bone surrounding the implant were statistically analyzed using analysis of variance. In addition, patterns of bone stress around the implant were examined. RESULTS: The results demonstrate that a smaller abutment diameter and a longer abutment connection significantly reduced the bone stresses (P <0.0001) in vertical and oblique loading conditions. Moreover, when the tapered abutment-implant interfaced connection was more parallel, bone stresses under vertical loading were less (P = 0.0002), whereas the abutment taper did not show significant effects on bone stresses under oblique loading (P = 0.83). Bone stresses were mainly influenced by the abutment diameter, followed by the abutment connection depth and the abutment taper. CONCLUSION: For an internal tapered abutment design, it was suggested that a narrower and deeper abutment-implant interface produced the biomechanical advantage of reducing the stress concentration in the crestal region around an implant.
机译:背景:本研究的目的是通过三维有限元方法和统计分析,确定各种设计的内部锥形基台关节对种植体周围牙槽骨应力的影响。方法:36个模型具有各种内部锥形基台-植入物接口设计,包括不同的基台直径(3.0、3.5和4.0 mm),连接深度(4、6和8 mm)和锥度(2度,4度,分别构建了6度和8度)。垂直或倾斜45度向基台顶表面施加170 N的力。使用方差分析统计分析植入物周围牙槽骨的最大冯·米塞斯(von Mises)骨应力值。另外,检查了植入物周围的骨应力模式。结果:结果表明,较小的基台直径和较长的基台连接可显着降低垂直和倾斜载荷条件下的骨应力(P <0.0001)。此外,当锥形基台与种植体的界面连接更加平行时,在垂直载荷下的骨应力较小(P = 0.0002),而在倾斜载荷下,基台锥度对骨应力没有显着影响(P = 0.83)。骨应力主要受基台直径的影响,然后受基台连接深度和基台锥度的影响。结论:对于内部锥形基台设计,建议采用更窄,更深的基台与种植体的界面,从而具有生物力学优势,可以减少种植体周围应力区域的应力集中。

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