首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >Friction between various self-ligating brackets and archwire couples during sliding mechanics.
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Friction between various self-ligating brackets and archwire couples during sliding mechanics.

机译:滑动力学过程中,各种自锁支架和弓丝对之间的摩擦。

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INTRODUCTION: The aim of this study was to evaluate the frictional resistance between active and passive self-ligating brackets and 0.019 x 0.025-in stainless steel archwire during sliding mechanics by using an orthodontic sliding simulation device. METHODS: Maxillary right first premolar active self-ligating brackets In-Ovation R, In-Ovation C (both, GAC International, Bohemia, NY), and SPEED (Strite Industries, Cambridge, Ontario, Canada), and passive self-ligating brackets SmartClip (3M Unitek, Monrovia, Calif), Synergy R (Rocky Mountain Orthodontics, Denver, Colo), and Damon 3mx (Ormco, Orange, Calif) with 0.022-in slots were used. Frictional force was measured by using an orthodontic sliding simulation device attached to a universal testing machine. Each bracket-archwire combination was tested 30 times at 0 degrees angulation relative to the sliding direction. Statistical comparisons were performed with 1-way analysis of variance (ANOVA) followed by Dunn multiple comparisons. The level of statistical significance was set at P <0.05. RESULTS: The Damon 3mx brackets had significantly the lowest mean static frictional force (8.6 g). The highest mean static frictional force was shown by the SPEED brackets (83.1 g). The other brackets were ranked as follows, from highest to lowest, In-Ovation R, In-Ovation C, SmartClip, and Synergy R. The mean static frictional forces were all statistically different. The ranking of the kinetic frictional forces of bracket-archwire combinations was the same as that for static frictional forces. All bracket-archwire combinations showed significantly different kinetic frictional forces except SmartClip and In-Ovation C, which were not significantly different from each other. CONCLUSIONS: Passive self-ligating brackets have lower static and kinetic frictional resistance than do active self-ligating brackets with 0.019 x 0.025-in stainless steel wire.
机译:引言:本研究的目的是通过使用正畸滑动模拟设备评估主动和被动自锁托槽与0.019 x 0.025-in不锈钢弓丝之间的摩擦阻力。方法:上颌右前磨牙主动自结扎支架In-Ovation R,In-Ovation C(两者,GAC International,Bohemia,NY)和SPEED(Strite Industries,Cambridge,Ontario,加拿大)和被动自结扎支架使用SmartClip(3M Unitek,蒙罗维亚,加利福尼亚),Synergy R(Rocky Mountain Orthodontics,丹佛,科罗拉多)和Damon 3mx(Ormco,Orange,加利福尼亚)使用0.022英寸插槽。摩擦力是通过使用附着在万能试验机上的正畸滑动模拟装置测量的。每个支架-弓丝组合在相对于滑动方向的0度角度下进行了30次测试。统计学比较采用方差单向分析(ANOVA),然后进行Dunn多重比较。统计学显着性水平设定为P <0.05。结果:Damon 3mx托槽的平均静摩擦力最低(8.6 g)。 SPEED括号(83.1 g)显示了最高的平均静摩擦力。其他括号的排名从高到低依次为In-Ovation R,In-Ovation C,SmartClip和SynergyR。平均静摩擦力在统计上均不同。支架-弓丝组合的动摩擦力等级与静摩擦力等级相同。除了SmartClip和In-Ovation C以外,所有的支架-弓丝组合都显示出显着不同的动摩擦力,它们之间没有显着差异。结论:被动式自结扎支架的抗静摩擦力和动摩擦阻力比使用0.019 x 0.025英寸不锈钢丝的主动式自结扎支架低。

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