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被动自锁托槽与滑动式低摩擦结扎托槽在排齐整平阶段的摩擦力比较。

Comparison of frictional resistance between passive self-ligating brackets and slide-type low-friction ligature brackets during the alignment and leveling stage.

作者信息

Gómez-Gómez Sandra-Liliana, Villarraga-Ossa Junes-Abdul, Diosa-Peña Juan-Gustavo, Ortiz-Restrepo Juan-Fernando, Castrillón-Marín Robinson-Andrés, Ardila Carlos M

机构信息

Orthodontics; Master in Epidemiology; Assistant Professor, School of Dentistry, Universidad de Antioquia.

Mechanic Engineer. Professor, Universidad de Antioquia.

出版信息

J Clin Exp Dent. 2019 Jul 1;11(7):e593-e600. doi: 10.4317/jced.55913. eCollection 2019 Jul.

Abstract

BACKGROUND

To compare the frictional resistance between passive self-ligating brackets and conventional brackets with low-friction ligature under bracket/archwire and root/bone interface during dental alignment and leveling.

MATERIAL AND METHODS

A tridimensional model of the maxilla and teeth of a patient treated with conventional brackets, and slide ligatures was generated employing the SolidWorks modeling software. SmartClip self-ligating brackets and Logic Line conventional brackets were assembled with slide low-friction ligatures, utilizing archwires with different diameters and alloys used for the alignment and leveling stage. Friction caused during the bracket/archwire interface and stress during the bone/root interface were compared through a finite element model.

RESULTS

SmartClip and Logic Line brackets with slide elastomeric low-friction elastomeric ligature showed similar frictional stress values of 0.50 MPa and 0.64 MPa, respectively. Passive self-ligating brackets transmitted a lower load along the periodontal ligament, compared to conventional brackets with a low-friction ligature.

CONCLUSIONS

Slide low-friction elastomeric ligatures showed frictional forces during the bracket/archwire interface similar to those of the SmartClip brackets, while the distribution of stresses and deformations during the root/bone interface were lower in the passive self-ligating brackets. Orthodontic friction, finite element analysis, orthodontic brackets, orthodontic wires.

摘要

背景

比较在牙齿排齐整平过程中,被动自锁托槽与使用低摩擦结扎丝的传统托槽在托槽/弓丝界面以及牙根/骨界面的摩擦阻力。

材料与方法

利用SolidWorks建模软件建立一名使用传统托槽和滑动结扎丝进行治疗的患者上颌骨和牙齿的三维模型。将SmartClip自锁托槽和Logic Line传统托槽与滑动低摩擦结扎丝组装在一起,使用不同直径和合金的弓丝用于排齐整平阶段。通过有限元模型比较托槽/弓丝界面产生的摩擦力以及骨/牙根界面的应力。

结果

配备滑动弹性低摩擦结扎丝的SmartClip和Logic Line托槽的摩擦应力值分别为0.50兆帕和0.64兆帕,二者相似。与使用低摩擦结扎丝的传统托槽相比,被动自锁托槽沿牙周膜传递的负荷更低。

结论

滑动低摩擦弹性结扎丝在托槽/弓丝界面显示出与SmartClip托槽相似的摩擦力,而被动自锁托槽在牙根/骨界面的应力和变形分布更低。正畸摩擦、有限元分析、正畸托槽、正畸弓丝。

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