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Stress transfer properties of different commercial dental implants: a finite element study

机译:不同商业牙科植入物的应力传递特性:有限元研究

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摘要

Dental implantology has high success rates, and a suitable estimation of how stresses are transferred to the surrounding bone sheds insight into the correct design of implant features. In this study, we estimate stress transfer properties of four commercial implants (GMI, Lifecore, Intri and Avinent) that differ significantly in macroscopic geometry. Detailed three-dimensional finite element models were adopted to analyse the behaviour of the bone-implant system depending on the geometry of the implant (two different diameters) and the bone-implant interface condition. Occlusal static forces were applied and their effects on the bone, implant and bone-implant interface were evaluated. Large diameters avoided overload-induced bone resorption. Higher stresses were obtained with a debonded bone-implant interface. Relative micromotions at the bone-implant interface were within the limits required to achieve a good osseointegration. We anticipate that the methodology proposed may be a useful tool for a quantitative and qualitative comparison between different commercial dental implants.
机译:牙科植入术具有很高的成功率,并且对应力如何转移到周围骨骼的适当估计有助于洞悉植入物特征的正确设计。在这项研究中,我们估计了四种商业植入物(GMI,Lifecore,Intri和Avinent)的应力传递特性,这些特性在宏观几何上有显着差异。采用详细的三维有限元模型来分析骨植入物系统的行为,具体取决于植入物的几何形状(两个不同的直径)和骨-植入物的界面条件。施加咬合静力,并评估其对骨骼,植入物和骨-植入物界面的影响。大直径避免了过载引起的骨吸收。使用脱骨的骨-植入物界面可获得更高的应力。骨-植入物界面处的相对微运动在实现良好骨整合所需的限度内。我们预计所提出的方法学可能是不同商业牙科植入物之间定量和定性比较的有用工具。

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