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Optimization of unilateral molar rotation correction by a trans-palatal bar: A three-dimensional analysis using the finite element method

机译:经-骨单侧臼齿旋转矫正的优化:三维有限元分析

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Objective: The main goal of this study was to optimize unilateral molar rotation correction by modifying a trans-palatal arch (TPA) design using the finite element method. Design: Three-dimensional analysis of different TPA designs was carried out using the finite element method. Setting: Department of Orthodontics, Tehran University of Medical Sciences, Iran. Material and methods: For this investigation, 13 three-dimensional finite element models were produced for different TPA designs without pre-activation bends. Each model contained a palatal bar and two tubes. Optimizing unilateral molar rotations was achieved by five separate different paths: incorporating U-loop(s), 'R' loop(s) or helix/helices, a reverse action of the helix/helices and adding a straight wire to the design. The mesial part of the left side tube was displaced 0.1, 0.25, 0.5 and 1 mm, successively towards the midline, simulating palatal bar tab engagement in a mesio-palatal rotated maxillary left molar. The mesio-distal force, moment and energy produced in the normal side (right) molar were recorded for each of the models. Results: Findings showed that in all designs, the associated mesializing force was lower than that seen in the traditional design and the moment showed an increasing pattern when compared with a simple palatal bar. Regarding energy levels, the same increasing pattern was observed in the designs between activations of 0.1 and 1.0 mm. Conclusion: According to our optimized system, the TPA design with the highest energy and moment, but the lowest mesializing force associated with derotating a maxillary molar tooth was a parallel wire II design (i.e. adding a straight wire).
机译:目的:本研究的主要目的是通过使用有限元方法修改跨pal弓(TPA)设计来优化单侧臼齿旋转矫正。设计:使用有限元方法对不同的TPA设计进行了三维分析。地点:伊朗德黑兰医科大学正畸科。材料和方法:为了进行这项研究,针对不同的TPA设计制作了13个三维有限元模型,而没有预激活弯头。每个模型包含一个bar骨棒和两个试管。通过五种不同的不同途径实现了优化的单侧臼齿旋转:结合了U形环,“ R”形环或螺旋/螺旋,逆向作用了螺旋,并在设计中添加了一条直线。左侧管的中部部分依次向中线移动0.1、0.25、0.5和1 mm,模拟pa骨tab突在中engagement旋转的上颌左磨牙中的接合。记录每个模型在正常磨牙(右)磨牙中产生的远中力,力矩和能量。结果:发现表明,在所有设计中,与之相比,与之相比,与之相比,与之相比,与之相比,与之相比,与之相比,与之相比,与之相比,与之相比的是,与之相比,与之相比,其具有更强的抗拉强度。关于能级,在设计中在0.1和1.0 mm的激活之间观察到相同的增加模式。结论:根据我们优化的系统,TPA设计具有最高的能量和力矩,但与上颌磨牙的旋转相关的最小切丝作用力是平行线II设计(即添加直线)。

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