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编号:11377010
仿生种植牙模型的三维有限元研究
http://www.100md.com 《福建医科大学学报》 2006年第6期
牙种植;牙周膜;牙模型;有限元分析;牙应力,,牙种植;牙周膜;牙模型;有限元分析;牙应力,1材料和方法,2结果,3讨论,参考文献:
     摘要: 目的 研究仿生种植牙、天然牙和骨性结合种植体3种模型骨界面上的应力分布,从理论上探讨种植体的新模型。方法 应用螺旋CT对上颌中切牙标本进行扫描,分别建立仿生种植牙、天然牙和骨性结合种植体模型,对3个模型施加同样的载荷,应用Super SAP93软件,计算出天然牙周膜和仿生牙周膜以及3种模型骨界面上的应力分布。结果 仿生牙周膜和天然牙周膜内外表面应力的变化趋势相同;骨性结合种植体模型骨界面上在颈部出现应力集中;仿生种植牙和天然牙2个模型骨界面上最大Von Mises应力从颈部到根端的变化比较均匀,没有出现颈部应力集中现象。结论 引入仿生牙周膜能起到天然牙周膜的生物力学功能,它能实现牙合力的分散和减缓作用,使仿生种植牙骨界面上的应力分布比较均匀,从生物力学相容性上说明了仿生种植牙模型的可行性。

    关键词: 牙种植;牙周膜;牙模型;有限元分析;牙应力

    The ThreeDimensional Finite Element Study on the Model of Bionic Dental Implant

    Wang Zongchi, Zhuang Guoming, Xie Peiqing, Lai Sencai

    1.Department of Physics, Sanming College, Sanming 365004, China

    2.The First Hospital of Sanming, Sanming 365000,China

    ABSTRACT:Objective To research the stress distribution of the bone interface of the bionic dental implant, natural tooth and osseointegrated implant, and to study the new model of the implant in theory. Methods The shape data of the central maxillary incisor are obtained by helixCT, then the threedimensional finite element models of the bionic implant, natural tooth and osseointegrated implant can be set up, respectively.Stress distribution of the natural periodontal membrane, bionic periodontal membrane and the bone interface of the three models are calculated out by SuperSAP93, when the same load exerted to the three models. Results The stress change of the inside and outside surface of the natural periodontal membrane and bionic periodontal membrane is in the same tendency. The stress concentration appears in the cervix of the osseointegrated implant.The maximum Von Mises stress which is on the bone interface of the bionic implant and the natural tooth changes evenly from their cervix to their roots, the stress concentration doesn't appear in the cervix. Conclusion The bionic periodontal membrane has the same function as the natural periodontal membrane. It has the dispersing and cushioning action against stress, and it make the stress of the bone interface of the bionic implant distribute evenly. ......

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