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首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >Three-dimensional finite element analysis of strength, stability, and stress distribution in orthodontic anchorage: A conical, self-drilling miniscrew implant system
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Three-dimensional finite element analysis of strength, stability, and stress distribution in orthodontic anchorage: A conical, self-drilling miniscrew implant system

机译:正畸锚固中强度,稳定性和应力分布的三维有限元分析:圆锥形,自钻式微螺钉植入系统

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Introduction: The aims of this study were to analyze the stress distribution and displacement patterns that develop in an orthodontic miniscrew implant and its surrounding osseous structures for 2 implant materials under horizontal and torsional loading, with no ossseointegration. Methods: A numeric approach was adopted. The finite element method was used to determine the stress and displacement of the various components at a given time after miniscrew implant application, when, due to viscoelastic relaxation effects, the only remaining stress field was from the application of the orthodontic load. Results: Stress distribution was not significantly different between the 2 types of implant material. Increased stress values were located at the necks of the implants and the surrounding cortical bone. Bending of the titanium miniscrew was observed in the neck region under horizontal traction. Conclusions: The differences between the values of stress and displacement we obtained for the 2 types of miniscrew were too small to be clinically significant. Optimization of the miniscrew implant composed of the titanium alloy might be achieved by increasing the bulk (quantity) of the material in the neck region. The miniscrew implant can be immediately loaded and used for group movement of teeth.
机译:引言:这项研究的目的是分析在水平和扭转载荷下没有骨整合的情况下,正畸微螺钉植入物及其周围的骨结构在2种植入物材料上的应力分布和位移模式。方法:采用数值方法。当使用微螺钉植入物后,由于粘弹性松弛效应,唯一剩余的应力场是来自正畸载荷的施加,因此使用有限元方法确定给定时间各个组件的应力和位移。结果:两种植入材料的应力分布没有显着差异。应力值增加位于植入物和周围皮质骨的颈部。在水平牵引下在颈部区域观察到钛微螺钉的弯曲。结论:我们获得的两种类型的微型螺钉的应力和位移值之间的差异太小,没有临床意义。通过增加颈部区域材料的体积(数量),可以优化由钛合金组成的微螺钉植入物。微螺钉植入物可立即加载并用于牙齿的成组运动。

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