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3D FINITE ELEMENT STRESS ANALYSIS OF AN IMPLANT SUPPORTED OVERDENTURE UNDER BRUXISM AND LINGUALIZED LOADING CONDITIONS

机译:磨牙和语言加载条件下种植体支持的覆盖义齿的3D有限元应力分析

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Bruxism is a nonfunctional motor activity that is characterized by grinding and clenching of the teeth. It has been postulated that bruxism causes excessive occlusal load on the dental implant and its superstructures leading to biological and biomechanical complications. While many researchers suggest that grinding/clenching causes early implant complications and accelerated bone loss, others indicate that the long term effects are still unclear. The goal of this study is to analyze the effect of bruxism loading condition on the stress distribution of an implant supported overdenture (ISO) using finite element analysis (FEA) and compare the results with one of the most functionally efficient occlusion schemes in the clinical dentistry - lingualized occlusion. A high fidelity solid model of a mandibular denture encompassing lingual and buccal cusps, mesial and distal fossae supported by four implants and a connecting titanium prosthetic bar, resting on alveolar bone were modeled in SolidWorks 2013 following proper clinical guidelines and imported to ANSYS 15.0 for stress analysis. The results of the study demonstrate that the stress distribution in the implant prostheses and surrounding bone is significantly affected due to bruxism as compared to the lingualized loading. While the location of the maximum stress concentration was the same (neck of the posterior implants) for both loading conditions, there was an increase of approximately 115% von-Mises stress for bruxism loading condition as compared to the lingualized occlusion. The maximum principal stress in the cortical bone surpassed the ultimate tensile strength limit of the jaw bone implying possibility of bone resorption in the peri-implant area.
机译:磨牙症是一种无功能的运动活动,其特征是磨齿和咬紧牙齿。据推测,磨牙症对牙齿植入物及其上层结构造成过多的咬合负荷,从而导致生物和生物力学并发症。尽管许多研究人员认为打磨/咬合会导致早期植入物并发症并加速骨丢失,但其他研究人员表明长期效果尚不清楚。这项研究的目的是使用有限元分析(FEA)分析磨牙负荷条件对种植体支持义齿(ISO)应力分布的影响,并将结果与​​临床牙科中功能最有效的咬合方案之一进行比较-语言闭塞。在SolidWorks 2013中按照正确的临床指南对下颌假牙的高保真实体模型进行建模,该模型包括舌侧和颊尖,由四个植入物支撑的内侧和远端窝以及连接的钛假牙棒,并固定在牙槽骨上,并遵循正确的临床指南,并导入到ANSYS 15.0中以应对压力分析。研究结果表明,与磨牙相比,磨牙可以显着影响假体和周围骨骼的应力分布。尽管两种加载条件下最大应力集中的位置相同(后植入物的颈部),但磨牙症加载条件下与舌状咬合相比,von-Mises应力增加了约115%。皮质骨中的最大主应力超过颌骨的极限抗拉强度极限,这意味着在种植体周围区域骨吸收的可能性。

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