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Three-dimensional nonlinear prediction of tooth movement from the force system and root morphology

机译:力系统牙齿运动的三维非线性预测与根形态学

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ABSTRACT Objectives To determine the different impact of moment-to-force ratio (M:F) variation for each tooth and spatial plane and to develop a mathematical model to predict the orthodontic movement for every tooth. Materials and Methods Two full sets of teeth were obtained combining cone-beam computed tomography (CBCT) and optical scans for two patients. Subsequently, a finite element analysis was performed for 510 different force systems for each tooth to evaluate the centers of rotation. Results The center of CROT locations were analyzed, showing that the M:F effect was related to the spatial plane on which the moment was applied, to the force direction, and to the tooth morphology. The tooth dimensions on each plane were mathematically used to derive their influence on the tooth movement. Conclusion This study established the basis for an orthodontist to determine how the teeth move and their axes of resistance, depending on their morphology alone. The movement is controlled by a parameter (k), which depends on tooth dimensions and force system features. The k for a tooth can be calculated using a CBCT and a specific set of covariates.
机译:摘要目的是确定每个牙齿和空间平面的时刻力比(M:F)变化的不同影响,并开发一种数学模型,以预测每种牙齿的正畸运动。材料和方法是两组全套牙齿,组合锥形束计算机断层扫描(CBCT)和两个患者的光学扫描。随后,对每颗牙齿进行510个不同的力系统进行有限元分析,以评估旋转中心。结果分析了克罗托位置的中心,表明M:F效应与施加该瞬间的空间平面有关,对力方向和牙齿形态有关。每个平面上的齿尺寸在数学上用于导出它们对牙齿运动的影响。结论本研究建立了正畸医生的基础,以确定牙齿如何移动和其抗性轴,这取决于它们的形态。该运动由参数(k)控制,这取决于齿尺寸和力系统特征。可以使用CBCT和特定的协变量来计算用于牙齿的K.

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