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Evaluation of friction on self-ligating and conventional brackets associated with different types of archwires submitted to sliding mechanics

机译:与不同类型的弓丝相关的自连接和传统支架的摩擦评估,提交到滑动力学

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Aim: The aim of this study was to verify the frictional force during sliding mechanics in orthodontic tooth movement, using conventional metal brackets of the active and passive self-ligating types with stainless steel and copper nickel titanium archwires. Methods: This experimental in vitro study was conducted with conventional metal (Morelli, Sorocaba, SP, Brazil) brackets, active self-ligated (SLI Morelli, Sorocaba, SP, Brazil) and passive self-ligated (SLP Morelli, Sorocaba, SP, Brazil), with slot 0.022 x 0.028 inches and Roth prescription.  The brackets were tested with rectangular section 0.019 x 0.025 inch copper nickel titanium and stainless steel archwires. For each type of bracket, 10 sets of plate/bracket/archwire segment (n=10) were fabricated. Non-parametric Kruskal Wallis and Dunn tests were used for comparison between types of brackets and Wilcoxon tests for comparison between types of archwires. Results: The results showed that the frictional force values were higher with copper nickel titanium than with stainless steel archwires (p0.05). When copper nickel titanium archwires were used, the active self-ligating brackets showed higher frictional force values than the other types, followed by the conventional brackets.  Lower frictional force values were observed with passive self-ligating brackets. For stainless steel archwires, no difference was observed between conventional and active self-ligating brackets, the passive self-ligating type presented lower frictional force values than the others. Conclusion: It was concluded that the higher frictional force was observed when active self-ligating brackets were associated with copper nickel titanium archwires.  Lower frictional force was verified between passive self-ligating brackets combined with stainless steel archwires.   
机译:目的:本研究的目的是验证在正畸牙齿运动中滑动力学期间的摩擦力,使用具有不锈钢和铜镍钛丝网的主动和被动自连接类型的常规金属支架。方法:该实验体外研究用常规金属(Morelli,Sorocaba,SP,巴西)支架,活性自我连接(SLI Morelli,Sorocaba,SP,巴西)和被动自我连接(SLP Morelli,Sorocaba,SP,巴西),插槽0.022 x 0.028英寸和罗斯处方。用矩形截面测试支架0.019 x 0.025英寸铜镍钛和不锈钢弓丝。对于每种类型的支架,制造了10组板/支架/弓丝段(n = 10)。非参数Kruskal Wallis和DUNN测试用于比较括号和WILCOXON测试之间的比较,以便在弓丝的类型之间进行比较。结果:结果表明,富含铜镍钛的摩擦力值比不锈钢弓丝(P <0.05)更高。当使用铜镍钛轴时,主动自连接括号显示比其他类型更高的摩擦力值,然后是传统支架。用被动自连接括号观察到较低的摩擦力值。对于不锈钢弓丝,在常规和有源自连接支架之间观察到无差异,被动自连接类型呈现比其他力的较低的摩擦力值。结论:得出结论是,当主动自连接支架与铜镍钛轴相关时,观察到较高的摩擦力。在无源自连接支架之间验证了较低的摩擦力,与不锈钢弓丝相结合。

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