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首页> 外文期刊>The Journal of Advanced Prosthodontics >Effect of implant- and occlusal load location on stress distribution in Locator attachments of mandibular overdenture. A finite element study
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Effect of implant- and occlusal load location on stress distribution in Locator attachments of mandibular overdenture. A finite element study

机译:种植体和咬合负载位置对下颌覆盖义齿的定位器附件中应力分布的影响。有限元研究

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PURPOSE The aim of this study is to evaluate and compare the stress distribution in Locator attachments in mandibular two-implant overdentures according to implant locations and different loading conditions. MATERIALS AND METHODS Four three-dimensional finite element models were created, simulating two osseointegrated implants in the mandible to support two Locator attachments and an overdenture. The models simulated an overdenture with implants located in the position of the level of lateral incisors, canines, second premolars, and crossed implant. A 150 N vertical unilateral and bilateral load was applied at different locations and 40 N was also applied when combined with anterior load at the midline. Data for von Mises stresses in the abutment (matrix) of the attachment and the plastic insert (patrix) of the attachment were produced numerically, color-coded, and compared between the models for attachments and loading conditions. RESULTS Regardless of the load, the greatest stress values were recorded in the overdenture attachments with implants at lateral incisor locations. In all models and load conditions, the attachment abutment (matrix) withstood a much greater stress than the insert plastic (patrix). Regardless of the model, when a unilateral load was applied, the load side Locator attachments recorded a much higher stress compared to the contralateral side. However, with load bilateral posterior alone or combined at midline load, the stress distribution was more symmetrical. The stress is distributed primarily in the occlusal and lateral surface of the insert plastic patrix and threadless area of the abutment (matrix). CONCLUSION The overdenture model with lateral incisor level implants is the worst design in terms of biomechanical environment for the attachment components. The bilateral load in general favors a more uniform stress distribution in both attachments compared to a much greater stress registered with unilateral load in the load side attachments. Regardless of the implant positions and the occlusal load application site, the stress transferred to the insert plastic is much lower than that registered in the abutment.
机译:目的本研究的目的是根据种植体的位置和不同的负荷条件,评估和比较下颌两种植体覆盖义齿中定位器附件中的应力分布。材料和方法创建了四个三维有限元模型,模拟了下颌骨中的两个骨整合植入物,以支持两个定位器附件和覆盖义齿。该模型模拟了覆盖义齿,其中义齿位于侧切牙,犬齿,第二前磨牙和交叉义齿的位置。在不同位置施加150 N的垂直单侧和双向载荷,在中线结合前向载荷时也施加40N。附件的基台(矩阵)和附件的塑料插入物(patrix)中的冯·米塞斯应力数据是通过数字方式生成的,用颜色编码的,并在附件和负载条件的模型之间进行比较。结果无论负荷如何,最大的应力值记录在覆盖义齿的义齿中,该义齿在侧切牙位置处植入。在所有型号和载荷条件下,连接基台(矩阵)承受的应力都比插入塑料(patrix)大得多。无论使用哪种模型,当施加单侧载荷时,与对侧相比,载荷侧Locator附件记录的应力要高得多。但是,在单独施加双侧后部载荷或在中线载荷下组合载荷的情况下,应力分布更加对称。应力主要分布在插入的塑料牙架的咬合面和侧面以及基台(矩阵)的无螺纹区域。结论就附着部件的生物力学环境而言,采用侧切牙水平种植体的覆盖义齿模型是最差的设计。一般而言,与负载侧附件中的单向负载所产生的应力相比,双向负载通常有利于两个附件中的应力分布更加均匀。无论植入物的位置和咬合施加部位如何,传递到嵌件塑料上的应力都远低于基台中记录的应力。

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