基于光学图像相关技术的弓丝扭矩表达式测量正畸支架扎翼弹塑性变形。

Journal of dental biomechanics Pub Date : 2010-01-01 Epub Date: 2009-12-13 DOI:10.4061/2010/397037
Ryan A Lacoursiere, David S Nobes, Darren L N Homeniuk, Jason P Carey, Hisham H Badawi, Paul W Major
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引用次数: 25

摘要

正畸舌根运动(扭矩)是治疗生物力学的一个重要方面,通常通过扭转正畸支架槽内的矩形金属丝来实现,从而引入力偶。正畸托架的变形会影响金属丝扭转所获得的力矩的大小。研制了一种利用光学图像相关技术精确量化金属丝扭转作用下支架缝隙尺寸变化的装置。同时可采集力矩大小、线扭度、支架槽尺寸等数据。支架系带翼在加载时发生弹性变形,钢丝单次旋转时也会发生塑性变形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Measurement of orthodontic bracket tie wing elastic and plastic deformation by arch wire torque expression utilizing an optical image correlation technique.

Orthodontic lingual root movement (torque) is an important aspect of treatment biomechanics and is typically achieved by torsion of a rectangular wire within the orthodontic bracket slot which introduces a force couple. The magnitude of the force moment achieved by wire torsion may be influenced by deformation of the orthodontic bracket. A device utilizing an optical image correlation technique has been developed to accurately quantify bracket slot dimensional changes during application of wire torsion. Simultaneous torque moment magnitude, degrees of wire twist, and bracket slot dimension data can be gathered. Bracket tie wing elastic deformation when loaded was demonstrated and plastic deformation was also observed with a single rotation of the wire.

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Effect of attachment type on load distribution to implant abutments and the residual ridge in mandibular implant-supported overdentures. Evaluation of mechanical properties of esthetic brackets. Biomechanical aspects of segmented arch mechanics combined with power arm for controlled anterior tooth movement: A three-dimensional finite element study. The effect of perturbations on resistance to sliding in second-order moments comparing two different bracket types. Comparative study of mechanical properties of dental restorative materials and dental hard tissues in compressive loads.
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