合理分配咬合负荷对种植支撑固定局部义齿正确生物力学的重要性:种植体、假体部件和基础设施的应力分析

Silvio Pedro da Silva SAKAMOTO, Diogo Henrique Vaz de SOUZA, Andrea Sayuri Silveira Dias TERADA, Alexandre Luiz Souto BORGES, Marcelo Bighetti TONIOLLO
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引用次数: 0

摘要

摘要目的:研究骨整合种植体固定局部义齿在不同咬合模式下对修复构件(种植体、构件和基础设施)外表面产生应力的生物力学行为。方法:实验组根据固定局部义齿所施加的咬合负荷的位置不同,各组的总咬合负荷均为750N,选择磨牙的咬合表相对于前磨牙的较大负荷。利用AnsysWorkbench 16.0软件进行仿真,并采用有限元法进行评价。结果:对种植体及其组件的分析结果显示,咬合负荷越靠后,应力发展越大(第4组),并且总是在假体组件与种植体之间的连接区域,因为该位置容易引起较大的螺钉松动。对基础结构的分析结果表明,最大分布的咬合负荷(组1)是产生较小应力的最佳情况。然而,即使在假体连接关键区域获得最高应力的第3组,所产生的氧化锆抗弯强度值也并不令人担忧。结论:固定局部义齿的咬合调节对系统的生物力学和长期保存,以避免可能的损伤和/或失效具有重要和决定性的影响,并且在所研究的所有结构中表现出显著和显着的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The importance of properly distributing the occlusal load for the correct biomechanics of implant-supported fixed partial dentures: stress analysis in implants, prosthetic components and infrastructures
ABSTRACT Objective: The present study analyzed the biomechanical behavior of the generated stress on the external surface of the rehabilitation elements (implants, components and infrastructures) according to different occlusion patterns on a fixed partial denture on osseointegrated implants. Method: The experimental groups varied according to the location of the occlusal load applied to the Fixed partial denture, with a total occlusal load of 750N in all groups, opting for greater loads on the occlusal table of the molar in relation to the premolar. This evaluation was performed by the finite element method with simulations by the AnsysWorkbench 16.0 Software program. Results: The results analyzed for implants and their components showed that the more posterior the occlusal loading, the greater the stress developed (group 4), always in the connection area between the prosthetic component and the implant, as this location can induce greater screw loosening. The results analyzed for the infrastructures showed that the most distributed occlusal loading possible (group 1) is the best situation for generating less stress. However, even in group 3 which obtained the highest stresses in the critical area of the prosthetic connection, the zirconia flexural strength values generated were not worrisome. Conclusion: It can be concluded that the occlusal adjustment of Fixed partial dentures are preponderant and decisive factors for correct biomechanics and preservation of the system in the long term in order to avoid possible damage and/or failures, and exert significant and notorious differences in the behavior of all structures studied herein.
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