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首页> 外文期刊>Bio-medical materials and engineering >A FEM based endosteal implant simulation to determine the effect of peri-implant bone resorption on stress induced implant failure
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A FEM based endosteal implant simulation to determine the effect of peri-implant bone resorption on stress induced implant failure

机译:基于FEM的骨内植入物模拟,以确定植入物周围骨吸收对应力诱发的植入物衰竭的影响

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摘要

Although dental implants exhibit only limited failure rates, their fracture is associated to major modifications of the prosthetic treatment and complex surgery for the removal of the remaining embedded implant part. This investigation aims to assess the developing stress fields in the bone-implant interface during mastication and asses the failure modes of oral implants. In order to achieve this, a FEM model of an implant was reverse engineered and virtually loaded at the top of the crown for a force spectrum ranging from 75-225 N in a vertical, horizontal and oblique occlusal direction. The calculated stress fields were compared with clinically retrieved fractured implants with identical geometrical characteristics and the fracture modes of both cases were correlated. The developing stress patterns facilitated the interpretation of the implant failure as the maximum stresses, indicated critical values in both, lingual and buccal sides of the implant-bone interface at a certain critical level of bone resorption, in which failure occurs.
机译:尽管牙科植入物仅表现出有限的失效率,但是它们的骨折与假体治疗的重大改进和复杂的手术有关,以去除剩余的嵌入式植入物部分。这项研究旨在评估咀嚼过程中骨-植入物界面中不断发展的应力场,并评估口腔植入物的失效模式。为了实现这一目标,对植入物的FEM模型进行了反向工程设计,并在垂直方向,水平方向和倾斜方向上以75-225 N的力谱将其虚拟加载到冠顶。将计算得到的应力场与具有相同几何特征的临床取回的骨折植入物进行比较,并比较两种情况的骨折模式。逐渐形成的应力模式有助于将植入物衰竭解释为最大应力,即在一定的骨吸收临界水平(在其中发生衰竭),在植入物-骨界面的舌侧和颊侧的舌侧和颊侧都有临界值。

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