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Friction testing of a new ligature.

机译:新的绑扎带的摩擦测试。

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摘要

Objective. To determine if American Orthodontics' (AO) new, experimental ligature demonstrates less friction in vitro when compared to four other ligatures on the market.;Methods. Four brackets were mounted on a custom metal fixture allowing an 0.018-in stainless steel wire attached to an opposite fixture with one bracket to be passively centered in the bracket slot. The wire was ligated to the bracket using one of five types of ligatures including the low friction test ligatures (AO), conventional ligatures (AO), Sili-Ties(TM) Silicone Infused Ties (GAC), SynergyRTM Low-Friction Ligatures (RMO), and SuperSlick ligatures (TP Orthodontics). Resistance to sliding was measured over a 7 mm sliding distance using a universal testing machine (Instron) with a 50 Newton load cell and a crosshead speed of 5 mm/min. The initial resistance to sliding (static) was determined by the peak force needed to initiate movement and the kinetic resistance to sliding was taken as the force at 5 mm of wire/bracket sliding. Fifteen unique tests were run for each ligature group in both dry and wet (saliva soaked for 24 hours with one drop prior to testing) conditions.;Results. In the dry state, the SuperSlick ligature demonstrated more static friction than all of the other ligatures, while SuperSlick and Sili-Ties demonstrated more kinetic friction than the AO conventional, AO experimental and Synergy ligatures. In the wet condition, SuperSlick and the AO experimental ligature demonstrated the least static friction, followed by the AO conventional and Sili-Ties. The most static friction was observed with the Synergy ligatures. In the wet condition, the SuperSlick, AO experimental and AO conventional exhibited less kinetic friction than the Sili-Ties and Synergy ligatures.;Conclusions. AO's experimental ligature exhibits less friction in the wet state than conventional ligatures, Sili-Ties and Synergy and is comparable to the SuperSlick ligature. These preliminary results suggest that the AO experimental ligature and the SuperSlick ligature create less friction, but direct conclusions regarding in vivo performance cannot be made and randomized controlled clinical trials are needed to determine if these ligatures have clinical significance in treatment efficiency.
机译:目的。为确定American Orthodontics(AO)的新型,实验性绑扎带与市面上的其他四种绑扎带相比,在体外的摩擦较小。将四个支架安装在定制的金属固定装置上,该金属固定装置允许将0.018英寸的不锈钢线连接到相对的固定装置上,其中一个支架可以被动地居中于支架插槽中。使用五种类型的绑扎线中的一种将导线绑扎到支架上,包括低摩擦测试绑扎线(AO),常规绑扎线(AO),Sili-Ties(TM)硅树脂灌注绑扎线(GAC),SynergyRTM低摩擦绑扎线(RMO) )和SuperSlick绑扎带(TP正畸)。使用具有50牛顿测力传感器,十字头速度为5 mm / min的通用测试机(Instron)在7 mm的滑动距离上测量了滑动阻力。初始的滑动阻力(静态)由启动运动所需的峰值力确定,而对滑动的动力学阻力取为5 mm导线/支架滑动力。在干燥和湿润(测试前将唾液浸泡24小时,滴加一滴)条件下,对每个结扎组进行了15个独特的测试。结果。在干燥状态下,SuperSlick绑扎带比所有其他绑扎带表现出更多的静摩擦,而SuperSlick和Sili-Ties则比AO传统,AO实验和Synergy绑扎带表现出更大的动摩擦。在潮湿条件下,SuperSlick和AO实验绑扎显示出最小的静摩擦,其次是AO传统和Sili-Ties。用Synergy绑扎带观察到最大的静摩擦。在潮湿条件下,SuperSlick,AO实验和AO常规方法显示出的动摩擦小于Sili-Ties和Synergy连字。 AO的实验性连字在湿态下的摩擦力比传统的连字,Sili-Ties和Synergy少,并且与SuperSlick连字相当。这些初步结果表明,AO实验性结扎和SuperSlick结扎产生的摩擦较小,但是无法得出有关体内性能的直接结论,需要进行随机对照临床试验以确定这些结扎在治疗效率方面是否具有临床意义。

著录项

  • 作者

    Mantel, Alison R.;

  • 作者单位

    Marquette University.;

  • 授予单位 Marquette University.;
  • 学科 Health Sciences Dentistry.;Engineering Materials Science.
  • 学位 M.S.
  • 年度 2011
  • 页码 43 p.
  • 总页数 43
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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