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Comparison of two asymmetric headgear force systems: A finite element analysis

机译:两个非对称头盔力系统的比较:有限元分析

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摘要

Abstract Objective: The aim of this study was to evaluate the effect of displacement patterns of the molar teeth in response to different asymmetric headgear loading using 3D finite element method. Methods: A series of twenty-five facebow with different left vs. right outer bow length and different expansion of left vs. right were designed. The non-favored side (right side) was shortened at intervals of 10 mm, and favored side (left side) was expanded 10 degree greater than right side and 5 degree expansion were successively added. At the first phase, each side received 200-g load, implying the neck strap to displace toward shorter arm. At the second phase, a total of 400-g load was applied to the ends of the outer bow. Because of the neck strap displacement, the shorter arm received greater load than the left side, the magnitude of the applied force to each side depended on difference of left vs. right outer bow length and expansion. Results: All systems were effective in promoting asymmetric distal movement of the molars. However, the asymmetrical facebow with the 40 mm shortening and 25 degree expansion outer bow when unequal force applied could be used in asymmetric mechanics. Medial and occlusal displacing forces were observed in all systems. Conclusions: Both equal and unequal force application is effective for molar distalization. Expansion of the outer bow in the affected side and shortening of the outer bow in the normal side were effective to produced differential distal molar movement.
机译:摘要目的:本研究的目的是评估摩尔齿的位移模式响应于不同的非对称元件载荷的施加效果。方法:设计了一系列二十五个面栏,不同左与左右外弓长和左左右的不同扩展。以10mM的间隔缩短非有利侧(右侧),并且优选的侧面(左侧)扩展到大于右侧的10度,并且连续加入5度膨胀。在第一阶段,每侧接收200-g负载,暗示颈带以使较短的臂移位。在第二阶段,将总共400g负载施加到外弓的末端。由于颈带位移,较短的臂容纳比左侧更大的载荷,施加的力的大小依赖于左与右侧弓长和膨胀的差异。结果:所有系统都有效促进臼齿的不对称远端运动。然而,当施加不平等力时,具有40mm缩短和25度膨胀外弓的不对称面部队伍可以在不对称力学中使用。在所有系统中观察到内侧和咬合位移力。结论:等于和不平等的力施加对摩尔远端有效。在受影响的侧面的外弓的膨胀和正常侧的外弓的缩短是有效地产生差分远端摩尔运动。

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