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Study of tension in the periodontal ligament using the finite elements method

机译:用有限元法研究牙周膜的张力

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Orthodontic movement is process of transformation of a physical stimulation into a force applied to a tooth, with a biological response identified as bone remodelling. Although it is possible to measure the force applied on a tooth, its distribution around the root is irregular forming areas of higher concentration of tensions, which do not correspond to the force initially applied. To evaluate the behavior of the periodontal ligament after the application of an external action and to prove which would be the areas of higher tension generated in the periodontium, the Finite Elements Method (FEM) was used in comparison to the results obtained in vivo on experimental models in rat. To test the error susceptibility of the technique used in the experimental model, the force application was simulated in three different heights on the mesial surface of the molar. The resulting histological analysis was compared with the result obtained for the computational code and disclosed that the greater focus of osteoclasts in activity had coincided with the compressed areas of the periodontal ligament. The alteration of points of force application generated areas of more extensive deformations in the periodontal ligament, as the point of application was more distant of the initial point, the horizontal force vector became bigger. These results demonstrate that the FEM is an adequate tool to study the distribution of orthodontic forces. The sensitivity of the experimental model used was also observed in relation to the installation of the dental movement device, which should be considered depending on the objective of the research.
机译:正畸运动是将物理刺激转化为作用于牙齿的力的过程,其生物学反应被识别为骨骼重塑。尽管可以测量施加在牙齿上的力,但其在牙根周围的分布是不规则的形成区域,集中了较高的张力,这与最初施加的力不对应。为了评估施加外力作用后牙周膜的行为并证明牙周膜中产生较高张力的区域,使用了有限元方法(FEM),与体内实验获得的结果进行了比较。大鼠模型。为了测试实验模型中使用的技术的误差敏感性,在磨牙近中表面的三个不同高度模拟了力的施加。将所得的组织学分析与通过计算代码获得的结果进行比较,并揭示破骨细胞更多地集中于活动与牙周膜的压缩区域相吻合。力施加点的改变在牙周膜中产生了更广泛的变形区域,因为力施加点离起始点越远,水平力矢量就越大。这些结果表明,有限元分析是研究正畸力分布的适当工具。还观察到了与牙科移动装置的安装有关的实验模型的敏感性,应根据研究的目的予以考虑。

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