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Asymmetric headgear for differential molar movement: a study using finite element analysis.

机译:非对称头饰用于不同的臼齿运动:使用有限元分析的研究。

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OBJECTIVE: To compare the effects of four different asymmetric headgear systems. DESIGN: A mathematical method for three-dimensional data called finite element analysis. SETTING: The Orthodontic Department, the Federal University of Rio de Janeiro and the Metallurgical Engineering Department of the Fluminense Federal University. METHODS: Four systems of delivering an asymmetrical force to headgear were studied: using face-bow arms of different lengths, a symmetric face-bow with one of the arms bent outward in relation to the internal arch, a symmetric face-bow used in combination with a transpalatal arch activated to produce an asymmetric force, and a symmetric face-bow with the outer bow soldered to the inner bow on the side where a larger force will be applied. RESULTS: All four systems were effective in promoting asymmetric distal movement of the molars. However, the symmetrical face-bow with the outer bow soldered to the inner bow (system 4) could be used in asymmetric mechanics if the bows are soldered on the opposite side to the proposed distalization. Lateral and occlusal displacing forces were observed in all systems as well as tip-back and rotational movements. CONCLUSION: The simulated computer model used in this investigation suggests that a face-bow with a symmetrically soldered joint and arms of equal lengths used in combination with a transpalatal arch is the best headgear option when asymmetric movement of upper molars is desired.
机译:目的:比较四种不同的不对称头带系统的效果。设计:一种用于三维数据的数学方法,称为有限元分析。地点:正畸科,里约热内卢联邦大学和弗鲁米嫩塞联邦大学冶金工程系。方法:研究了四种向头饰施加不对称力的系统:使用不同长度的脸弓臂,对称的脸弓,其中一个臂相对于内弓向外弯曲,对称的脸弓结合使用pal骨弓被激活以产生不对称的力,而对称的弓形弓则将外弓焊接到将施加更大力的一侧的内弓上。结果:所有四个系统均有效地促进了臼齿的不对称向远侧运动。但是,如果将弓形焊在与建议的远侧固定相反的一侧,则将弓形焊到弓形的对称面弓(系统4)可用于不对称力学中。在所有系统中都观察到了横向和咬合移位力,以及尖顶和旋转运动。结论:本研究使用的模拟计算机模型表明,当需要上臼齿不对称移动时,具有对称焊接接头和等长臂的臂弓与trans弓结合使用是最佳的头饰选择。

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