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首页> 外文期刊>Dental Press Journal of Orthodontics >Comparative study of friction between metallic and conventional interactive self-ligating brackets in different alignment conditions
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Comparative study of friction between metallic and conventional interactive self-ligating brackets in different alignment conditions

机译:不同对准条件下金属与传统交互式自结扎支架之间摩擦的比较研究

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摘要

OBJECTIVE: The aim of this study was to compare the friction between three bracket models: conventional stainless steel (Ovation, Dentsply GAC), self-ligating ceramic (In-Ovation, Denstply GAC) and self-ligating stainless steel brackets (In-Ovation R, Dentsply GAC). METHODS: Five brackets were used for each model. They were bonded to an aluminum prototype that allowed the simulation of four misalignment situations (n = 10). Three of these situations occurred at the initial phase (in which a 0.016-in nickel-titanium wire was used): 1. horizontal; 2. vertical; and 3. simultaneous horizontal/vertical. One of the situations occurred at the final treatment phase: 4. no misalignment (in which a 0.019 x 0.025-inch stainless steel rectangular wire was used). The wires slipped through the brackets and friction was measured by a Universal Testing Machine. RESULTS: Analysis of variance followed by Tukey's Test for multiple comparisons (α = 0.05) were applied to assess the results. Significant interaction (p 0.01) among groups was found. For the tests that simulated initial alignment, Ovation(r) bracket produced the highest friction. The two self-ligating models resulted in lower and similar values, except for the horizontal situation, in which In-Ovation C(r) showed lower friction, which was similar to the In-Ovation R(r) metallic model. For the no misalignment situation, the same results were observed. CONCLUSION: The self-ligating system was superior to the conventional one due to producing less friction. With regard to the material used for manufacturing the brackets, the In-Ovation C(r) ceramic model showed less friction than the metallic ones.
机译:目的:本研究的目的是比较三种支架模型之间的摩擦:常规不锈钢(Ovation,Dentsply GAC),自结扎陶瓷(In-Ovation,Denstply GAC)和自结扎不锈钢支架(In-Ovation) R,Dentsply GAC)。方法:每个模型使用五个支架。他们被绑定到一个铝制原型,可以模拟四种未对准情况(n = 10)。这些情况中的三种发生在初始阶段(使用0.016英寸镍钛丝):1.水平; 2.垂直3.同时水平/垂直。一种情况发生在最后的处理阶段:4.没有未对准(其中使用了0.019 x 0.025英寸的不锈钢扁线)。电线滑过支架,用万能试验机测量摩擦。结果:方差分析,然后进行Tukey检验进行多次比较(α= 0.05),以评估结果。发现各组之间存在显着相互作用(p <0.01)。对于模拟初始对准的测试,Ovation(r)支架产生最大的摩擦力。除水平情况外,两个In-Ovation C(r)摩擦系数较低,这两个自结扎模型的值较低且相似,这与In-Ovation R(r)金属模型相似。对于没有错位的情况,观察到相同的结果。结论:自结扎系统由于产生较少的摩擦而优于常规系统。关于用于制造托架的材料,In-Ovation C(r)陶瓷模型的摩擦力比金属模型小。

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