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Factorial analysis of variables affecting bone stress adjacent to the orthodontic anchorage mini-implant with finite element analysis

机译:用有限元分析法分析影响正畸支抗微型种植体邻近骨应力的变量

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Introduction: Mini-implants are now widely accepted as anchorage for orthodontic tooth movement because of the convenience of the placement procedure, their comparative low cost, and the fact that they can be immediately loaded after surgery. In this study, we incorporated a finite element approach and factorial analysis to determine the biomechanical effects of exposure length of the mini-implant, the insertion angle, and the direction of orthodontic force. Methods: Twenty-seven finite element models were constructed to simulate the biomechanical response of the alveolar bone adjacent to the mini-implant. Factorial analysis was performed to investigate the comparative influence of each factor. Results: The simulation results showed that the exposure length of the mini-implant had a statistically significant influence on bone stress, with a contribution of 82.35%. Increased exposure length resulted in higher bone stress adjacent to the mini-implant. Whereas all factors investigated had a statistically significant influence on cancellous bone stress, the stress values associated with cancellous bone were much less than those of cortical bone. Conclusions: Increased exposure lengths resulted in higher bone stresses adjacent to the mini-implant. The percentage of contribution of the insertion angle of the mini-implant (6.03%) was also statistically significant but much less than that of the exposure length (82.35%). The direction of orthodontic force had no significant effect on cortical bone stress.
机译:简介:由于植入程序的便利性,相对较低的成本以及可以在手术后立即装载的事实,微型植入物现在已被广泛接受为正畸牙齿移动的固定物。在这项研究中,我们结合了有限元方法和因子分析来确定微型植入物的暴露长度,插入角度和正畸力方向的生物力学效应。方法:建立了27个有限元模型来模拟小种植体附近牙槽骨的生物力学响应。进行因子分析以研究每个因子的比较影响。结果:模拟结果表明,微型植入物的暴露长度对骨应力有统计学意义的影响,占82.35%。暴露时间的增加导致邻近微型植入物的骨应力更高。尽管所研究的所有因素对松质骨应力具有统计学上的显着影响,但与松质骨相关的应力值远小于皮质骨。结论:暴露时间的增加导致微型植入物附近的骨应力升高。微型植入物的插入角的贡献百分比(6.03%)也具有统计学意义,但远小于暴露长度的贡献百分比(82.35%)。正畸力的方向对皮质骨应力没有显着影响。

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