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首页> 外文期刊>Journal of Medical Engineering >Micromotion of Dental Implants: Basic Mechanical Considerations
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Micromotion of Dental Implants: Basic Mechanical Considerations

机译:牙种植体的微动:基本机械注意事项

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Micromotion of dental implants may interfere with the process of osseointegration. Using three different types of virtual biomechanical models, varying contact types between implant and bone were simulated, and implant deformation, bone deformation, and stress at the implant-bone interface were recorded under an axial load of 200 N, which reflects a common biting force. Without friction between implant and bone, a symmetric loading situation of the bone with maximum loading and displacement at the apex of the implant was recorded. The addition of threads led to a decrease in loading and displacement at the apical part, but loading and displacement were also observed at the vertical walls of the implants. Introducing friction between implant and bone decreased global displacement. In a force fit situation, load transfer predominantly occurred in the cervical area of the implant. For freshly inserted implants, micromotion was constant along the vertical walls of the implant, whereas, for osseointegrated implants, the distribution of micromotion depended on the location. In the cervical aspect some minor micromotion in the range of 0.75 μm could be found, while at the most apical part almost no relative displacement between implant and bone occurred.
机译:牙植入物的微动可能会干扰骨整合的过程。使用三种不同类型的虚拟生物力学模型,模拟了植入物与骨骼之间不同的接触类型,并在轴向载荷为200 N的情况下记录了植入物变形,骨骼变形和在植入物-骨骼界面处的应力,这反映了常见的咬合力。在植入物与骨骼之间没有摩擦的情况下,记录了骨骼的对称加载情况,其中最大的加载和位移在植入物的顶点处。螺纹的添加导致在顶端部分的载荷和位移减小,但是在植入物的垂直壁上也观察到载荷和位移。在植入物和骨骼之间引入摩擦会降低整体位移。在力配合的情况下,负载转移主要发生在植入物的子宫颈区域。对于新插入的植入物,微运动沿植入物的垂直壁是恒定的,而对于骨整合型植入物,微运动的分布取决于位置。在颈椎方面,可以发现在0.75μm范围内有一些微小的微动,而在最顶端的部分,植入物和骨骼之间几乎没有发生相对位移。

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