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Efficacy of adding a supporting implant in stress distribution of long-span fixed partial dentures: a 3D finite element analysis

机译:在大跨度固定局部义齿的应力分布中添加支撑种植体的功效:3D有限元分析

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摘要

>Background. Long span is seen in many clinical situations. Treatmentplanning options of these cases are difficult and may require FPD, RPD or ISP. Each option has its own disadvantages, including mechanical problems, patient comfort and cost. This article will evaluate the stress distribution of a different treatment option, which consists of adding a single sup-porting implant to the FPD by using 3D finite element analysis.>Methods. Three models, each consisting of 5 units, were created as follows: 1. Tooth Pontic Pontic Pontic Tooth; 2. Tooth Pontic Implant Pontic Tooth; 3. Tooth Pontic Pontic Implant Tooth. An axial force was applied to the prostheses by using 3D finite element method and stresses were evaluated.>Results. The maximum stress was found in the prostheses in all the models; the highest stress values in all the shared components of the models were almost similar. Stress in implants was lower in the second model than the third one.>Conclusion. Adding a supporting implant in long-span FPD has no advantages while it has the disadvantages of complicating treatment and the complications that may occur to the implant and surrounding bone.
机译:>背景。 在许多临床情况下,跨度都很大。这些病例的治疗计划选择很困难,可能需要FPD,RPD或ISP。每种选择都有其自身的缺点,包括机械问题,患者舒适度和成本。本文将评估不同治疗方案的应力分布,该方案包括通过使用3D有限元分析将单个支持移植物添加到FPD。>方法。三个模型,每个模型由5个单位组成,创建如下:1.齿Pontic齿Pontic齿; 2.牙桥植入物牙桥; 3.牙Pontic植牙。使用3D有限元方法对假体施加轴向力并评估其应力。>结果。在所有模型中,假体的最大应力均达到最大。在模型的所有共享组件中,最高应力值几乎相似。在第二种模型中,植入物的应力低于第三个模型。>结论。在大跨度FPD中添加支持性植入物没有任何好处,而它却具有使治疗复杂化的缺点以及可能引起的并发症。植入物和周围的骨头。

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