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Force Transfer and Stress Distribution in an Implant-Supported Overdenture Retained with a Hader Bar Attachment: A Finite Element Analysis

机译:带有Hader Bar固定件的植入物支撑覆盖义齿中的力传递和应力分布:有限元分析

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摘要

Background and Objectives. A key factor for the long-term function of a dental implant is the manner in which stresses are transferred to the surrounding bone. The effect of adding a stiffener to the tissue side of the Hader bar helps to reduce the transmission of the stresses to the alveolar bone. But the ideal thickness of the stiffener to be attached to the bar is a subject of much debate. This study aims to analyze the force transfer and stress distribution of an implant-supported overdenture with a Hader bar attachment. The stiffener of the bar attachments was varied and the stress distribution to the bone around the implant was studied. Methods. A CT scan of edentulous mandible was used and three models with 1, 2, and 3 mm thick stiffeners were created and subjected to loads of emulating the masticatory forces. These different models were analyzed by the Finite Element Software (Ansys, Version 8.0) using von Mises stress analysis. Results. The results showed that the maximum stress concentration was seen in the neck of the implant for models A and B. In model C the maximum stress concentration was in the bar attachment making it the model with the best stress distribution, as far as implant failures are concerned. Conclusion. The implant with Hader bar attachment with a 3 mm stiffener is the best in terms of stress distribution, where the stress is concentrated at the bar and stiffener regions.
机译:背景和目标。牙齿植入物的长期功能的关键因素是应力传递到周围骨骼的方式。在Hader杆的组织侧添加加强筋的作用有助于减少应力传递到牙槽骨。但是,要连接到钢筋上的加劲肋的理想厚度是很多争论的主题。这项研究旨在分析具有Hader杆附件的植入物支持的覆盖义齿的力传递和应力分布。改变杆附件的加强筋,并研究植入物周围骨头的应力分布。方法。使用无牙颌的CT扫描,并创建了三个具有1、2和3μmm厚度的加劲肋的模型,并承受了模拟咀嚼力的载荷。使用von Mises应力分析,通过有限元软件(Ansys,版本8.0)分析了这些不同的模型。结果。结果表明,对于模型A和B,最大应力集中出现在植入物的颈部。在模型C中,最大应力集中在棒形附件中,使其成为具有最佳应力分布的模型,只要植入失败即可。关心。结论。就应力分布而言,具有Hader杆连接并带有3mm加强筋的植入物是最好的,应力集中在杆和加强筋区域。

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