Evaluation of torque expression with varied bracket positions and varying crown-root angles of maxillary central incisor – A 3 dimensional finite element study

Sushmita Batni, V. Shetty, Taher Manasawala, Devashree Mujumdar
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Abstract

To evaluate the torque expression of right permanent maxillary central incisor with varying bracket positions and to compare the torque expression of the same tooth with different crown-root angulations. Finite Element Models of Maxillary Central Incisor were used for simulation of torque expression with various crown-root angles. Three FEM models of a Maxillary Central Incisor with different crown-root angles (170˚,175˚,180˚, and 165°) were constructed with varying bracket heights and subjected to a 30° labial root torque and the resultant torque expressions were evaluated. The model with the maximum variation in crown-root angle (165˚) showed the maximum torque expression at 6mm and minimum at 3mm bracket height while the model with a minimum variation in crown-root angle (180°) showed the minimum torque expression both and 3mm and 6mm bracket height. With increase in the crown-root angles of a tooth, the torque expression away from the incisal edge increases.
上颌中切牙不同托槽位置和冠根角下扭矩表达式的三维有限元分析
评价右恒颌中切牙在不同托槽位置下的扭矩表达,并比较同一牙不同冠根角度下的扭矩表达。采用上颌中切牙有限元模型,对不同牙冠-牙根角下的转矩表达式进行了仿真。建立不同牙冠-根角(170˚、175˚、180˚和165°)的上颌中切牙的3个有限元模型,分别施加30°唇根扭矩,并计算结果。冠根角变化最大的模型(165˚)在支架高度为6mm时扭矩表达式最大,在支架高度为3mm时扭矩表达式最小;冠根角变化最小的模型(180°)在支架高度为3mm和6mm时扭矩表达式最小。随着牙冠-牙根角的增大,远离牙切缘的转矩表达式增大。
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