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A new application of thermal active nickel titanium alloys: Canine retraction springs.

机译:热活性镍钛合金的新应用:犬牙回缩弹簧。

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摘要

Research objective. To design and fabricate "shape-memorized" canine retraction springs made of Nickel-Titanium (NiTi) alloys for orthodontic canine retraction.; Methods. Two prototypes of springs, the modified Delta-loop and T-loop, were first designed in a simulation computer program Loop RTM (Dr. Halazonetis, Athens, Hellas, Greece). Thirty springs, fifteen of each prototype, were fabricated by an innovative hand-made method with preformed 017 inch x 025 inch 35°C copper NiTi wires (Ormco, Glendora, CA, USA). A force-moment measuring apparatus (OrthoMeasureRTM, Young R&D, Avon, CT, USA) was used to test the horizontal unloading forces and moment to forces ratios of springs during a 7-mm unloading from the interbracket distance of 22 to 15 mm under the ambient temperature of 38 +/- 1°C. The resultant forces and moment to force ratios of the two springs were then compared and analyzed.; Results. (1) The resultant unloading forces of both springs were suitable for canine retraction. Delta-loop springs generated significantly higher unloading forces (150--260 grams) than those produced by T-loop springs (50--210 grams), but a lower force-deflection rate (16.2 grams/mm) than that of T-loop springs (5--210 grams). (2) The moment to force ratios produced from both springs, range from 6.9 to 8.2 mm for Delta-loops and 7.1 to 14.1 mm for T-loops, will mainly retract canines via controlled tipping for Delta-loops, and via controlled tipping and then translation for T-loop springs. The differential moment to force ratios between canines and molars in both springs implied a force system of moderate anchorage control without unwanted vertical forces. (3) The forces and moment to force ratios predicted by the software LoopRTM were 10 to 30 per cent higher than those of the experimental data.; Conclusion. (1) Both thermal active NiTi springs can produce desirable forces, low force-deflection rates, and moderate anchorage control for canine retraction. However, the moment to force ratios generated by both springs were not sufficient enough to produce canine bodily movement along space closure. (2) The forces and moment to force ratios predicted by the software LoopRTM were 10 to 30 per cent higher than those of the experimental data. (3) The advantageous clinical aspect about these springs is what so called "smart springs for dummies". Since all the forces, anti-tipping moment to force ratios and anchorage control are pre-programmed in these shape-memorized NiTi springs, there is no problem such as technique sensitivities for loop activation as in the frictionless mechanics. Moreover, NiTi retraction springs can deliver low declining forces and predictable moment to force ratios over a wide range of activation without loop activation. Therefore, doctors' chair time, patient discomfort, and appointment frequency can be reduced significantly.
机译:研究目的。设计和制造由镍钛(NiTi)合金制成的“形状记忆”犬牙缩回弹簧,用于正畸犬牙缩回。方法。首先在模拟计算机程序Loop RTM(Halazonetis博士,雅典,希腊海拉斯)中设计了两个弹簧原型,即改进的Delta环和T环。用创新的手工方法用预制的017英寸x 025英寸35°C铜镍钛丝(美国加利福尼亚州格伦多拉市Ormco)通过创新的手工方法制造了三十个弹簧,每个原型中的十五个弹簧。力矩测量仪(OrthoMeasureRTM,Young R&D,Avon,CT,USA)被用来测试在7mm的卸载过程中从支架间距离22至15 mm的距离为7mm时的水平卸载力和弹簧的力矩与力之比。环境温度为38 +/- 1°C。然后比较和分析了两个弹簧的合力和力矩力比。结果。 (1)两个弹簧的合力均适合犬的缩回。三角弹簧产生的卸载力(150--260克)比T形弹簧产生的卸载力(50--210克)高得多,但力偏转率(16.2克/毫米)比T型弹簧低环形弹簧(5--210克)。 (2)两个弹簧产生的力矩比,对于Delta环,范围为6.9至8.2 mm;对于T环,范围为7.1至14.1 mm。然后平移为T形环弹簧。在两个弹簧中,犬齿和臼齿之间的力矩差与力之比暗示着适度的锚固控制力系统,没有多余的垂直力。 (3)LoopRTM软件预测的力和力矩比比实验数据高10%到30%。结论。 (1)两种热激活的NiTi弹簧都可以产生理想的力,低的力偏转率以及适度的锚固控制以实现犬的后退。然而,两个弹簧产生的力矩与力之比不足以产生犬齿沿空间封闭的身体运动。 (2)LoopRTM软件预测的力和力矩比比实验数据高10%到30%。 (3)关于这些弹簧的有利的临床方面是所谓的“用于假人的智能弹簧”。由于在这些形状记忆的NiTi弹簧中预先编程了所有力,抗倾覆力矩与力的比率以及锚固控制,因此不存在诸如无摩擦力学中对回路激活的技术敏感性之类的问题。而且,NiTi缩回弹簧可以在很宽的激活范围内提供低下降力和可预测的力矩比,而无需进行回路激活。因此,可以大大减少医生的坐诊时间,患者的不适感和预约频率。

著录项

  • 作者

    Chen, Wei-Tze Victoria.;

  • 作者单位

    University of Illinois at Chicago.;

  • 授予单位 University of Illinois at Chicago.;
  • 学科 Health Sciences Dentistry.
  • 学位 M.S.
  • 年度 2004
  • 页码 82 p.
  • 总页数 82
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 口腔科学;
  • 关键词

  • 入库时间 2022-08-17 11:43:57

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