Evaluation of Effects of Various Alpha and Beta Angulations for T-loop Made of Stainless Steel and Titanium Molybdenum Archwires during Space Closure: Finite Element Method (FEM) Study.

Mymensingh medical journal : MMJ Pub Date : 2023-07-01
S Shinde
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Abstract

Space closure follows the initial stage of levelling and alignment in Pre-adjusted Edgewise treatment. There are majorly two methods of space closure, Loop mechanics and Sliding mechanics. Loop mechanics or frictionless mechanics is a preferred method because of its potential to produce pre-determined moment-to-force ratios which accurately achieve controlled movement of teeth. The aim of this finite element study was to evaluate the effects of three types of retraction loops with different moment bends (alpha and beta) made of 0.016"×0.022" stainless steel and TMA archwires with Finite Element Analysis. A Finite element model of CAD geometric model of standard MBT prescription (0.018" slot), Stainless Steel and Titanium Molybdenum Alloy (TMA) wire (0.016" × 0.022") and 3 loops (T-loop, Open Vertical and Closed helical loop) were constructed. A solid model of upper jaw with all permanent maxillary teeth except 1st premolar (extraction) with surrounding periodontal ligament and alveolar bone was prepared. Force, moment to force ratio, mesio-distal crown tipping, mesio-distal root tipping and vertical root movement (extrusion) were measured for different alpha and beta bends in anterior and posterior segments respectively. Force values without moment bends was found to be highest in open vertical loop in both anterior (SS- 414gms; TMA- 255gms) and posterior region (SS-540; TMA-370gms) with both SS and TMA wires. Moment to Force ratio (M/F) at both anterior and posterior segment was found to be highest in T-loop followed by closed helical loop and least in open vertical loop. Extrusion was found to be minimal in T-loop followed by closed helical loop, was maximum in open vertical loop. T-loop showed maximal control in terms of minimal extrusion and maximum M/F ratio amongst the three loops.

不同α和β角度对不锈钢和钛钼弧线t形环空间闭合影响的评价:有限元法研究。
在预先调整的边缘处理中,空间闭合是在调平和对准的初始阶段之后进行的。空间闭合的方法主要有两种:循环力学和滑动力学。循环力学或无摩擦力学是首选的方法,因为它有可能产生预先确定的力矩-力比,从而准确地实现牙齿的控制运动。本有限元研究的目的是通过有限元分析来评估0.016“×0.022”不锈钢和TMA弧线制成的三种不同弯矩(α和β)的收放环的效果。建立了标准MBT处方(0.018”槽)、不锈钢和钛钼合金(TMA)丝(0.016”× 0.022”)和3个环(t环、开式垂直环和闭式螺旋环)的CAD几何模型的有限元模型。制备上颌除第一前磨牙(拔牙)外所有恒牙及周围牙周韧带和牙槽骨的实体模型。分别测量了前、后节段不同α弯和β弯的受力、弯矩力比、中远端冠倾斜、中远端根倾斜和根垂直运动(挤压)。无弯矩弯曲的力值在两个前(SS- 414gms;TMA- 255gms)和后区(SS-540;TMA-370gms),带有SS线和TMA线。前后节弯矩力比(M/F)均以t型环最大,螺旋形环次之,垂直形环最小。在t型环中挤压最小,其次是封闭的螺旋环,在开放的垂直环中挤压最大。在三个环中,t环在最小挤压和最大M/F比方面表现出最大的控制力。
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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