Effect of play between bracket and archwire on anterior tooth movement in sliding mechanics: A three-dimensional finite element study.

Journal of dental biomechanics Pub Date : 2012-01-01 Epub Date: 2012-10-17 DOI:10.1177/1758736012461269
Jun-Ya Tominaga, Pao-Chang Chiang, Hiroya Ozaki, Motohiro Tanaka, Yoshiyuki Koga, Christoph Bourauel, Noriaki Yoshida
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引用次数: 25

Abstract

Objectives: The aim of this study was to clarify the effect of the play between the bracket and the archwire on anterior tooth movement subjected to the retraction force from various lengths of power arms in sliding mechanics.

Materials and methods: A three-dimensional finite element method was used to simulate en masse anterior tooth retraction in sliding mechanics. The displacements of the maxillary incisor and the archwire deformation were calculated when the retraction force was applied.

Results: When a play did not exist, bodily movement was obtained at 5.0 mm length of power arm. In case a play existed, bodily movement was observed at the power arm length of 11.0 mm.

Conclusions: In the actual clinical situation, a bracket/archwire play and the torsion of the archwire within the bracket slot should be taken into consideration to prescribe an optimal power arm length and to achieve effective anterior tooth movement.

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滑动力学中托槽与弓丝之间的配合对前牙运动的影响:三维有限元研究。
目的:本研究的目的是阐明在滑动力学中,在不同长度的动力臂的内收力作用下,托槽和弓丝之间的作用对前牙运动的影响。材料与方法:采用三维有限元法模拟滑动力学中前牙整体后缩。计算了上颌切牙在牵入力作用下的位移和弓丝变形。结果:当剧本不存在时,在力臂长度5.0 mm处获得身体运动。结论:在临床实际情况下,应考虑托槽/弓丝的发挥及弓丝在托槽内的扭转情况,制定最佳的弓臂长度,实现有效的前牙活动。
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Effect of attachment type on load distribution to implant abutments and the residual ridge in mandibular implant-supported overdentures. Evaluation of mechanical properties of esthetic brackets. Biomechanical aspects of segmented arch mechanics combined with power arm for controlled anterior tooth movement: A three-dimensional finite element study. The effect of perturbations on resistance to sliding in second-order moments comparing two different bracket types. Comparative study of mechanical properties of dental restorative materials and dental hard tissues in compressive loads.
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