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Effect of Bracket Slot and Archwire Dimension on Posterior Tooth Movement in Sliding Mechanics: A Three-dimensional Finite Element Analysis

机译:支架槽和弓丝尺寸对滑动力学后牙齿运动的影响:三维有限元分析

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Introduction Space closure by molar protraction has always been a challenge in orthodontic treatment due to larger root surface area which requires additional anchorage. Ideally, there should be little or no tipping. However, the protraction forces, being occlusal and buccal to the centre of resistance (CR) of the tooth, cause tipping and rotations. Aim The aim of the study was to assess the effect of bracket slot and archwire dimensions on posterior tooth movement during space closure in sliding mechanics and evaluate the length of power arm to bring about translatory movement of teeth using three-dimensional finite element analysis. Materials and methods A model of the maxillary teeth was created and converted to a finite element format through a meshing software, Hypermesh. Two three-dimensional models, each with a combination of 0.017”× 0.022” archwire in 0.018” slot (model 1)?and 0.019”×0.025” archwire in 0.022” slot (model 2), were generated. Power arms of different lengths were attached to the first molar. Miniscrew was inserted between the canine and first premolar. Results In model one, the power arm of 10-mm height provided controlled tooth movement than the one with 6 mm height, and in model two, power arms of both 6-mm and 10-mm height produced controlled tooth movement. Conclusions As the force was raised apically from the slot, more translation was observed. Power arm of 6-mm height can be used due to anatomic limitation of the vestibule.
机译:由于较大的根表面积需要额外的锚固,摩尔抗震的引入空间闭合始终是正畸治疗的挑战。理想情况下,应该有很少或根本没有划船。然而,突起力,是牙齿(Cr)中心的咬合力和颊,导致倾翻和旋转。目的这一研究的目的是评估支架槽和弓丝尺寸在滑动力学空间封闭期间对后齿运动的影响,并评估动力臂的长度,从三维有限元分析带来齿的平移运动。材料和方法通过网格软件,HyperMesh创建并转换为有限元格式的颌牙的模型。两种三维模型,每个三维模型,0.018英寸槽(型号1)的组合为0.017“×0.022”?和0.019“×0.025”archwire,在0.022英寸时隙(型号2)中。不同长度的动力臂连接到第一磨牙。迷你螺钉插入犬和第一次磨牙之间。导致模型1,电动臂10毫米高度提供控制的齿移动比具有6mm高的6毫米的齿轮,并且在模型中,6毫米和10mm高度的电臂产生受控齿移动。随着力从槽中提高力的结论,观察到更多的翻译。由于前庭的解剖限制,可以使用6毫米高度的动力臂。

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