Geometrical Effects of Two Different Space Closing Loops and Its Forces and Moments—A FEM Study

Gurunath Nupur Arathi, Rekha Bharadwaj, S. Venkateswaran, N. Krishnaswamy
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引用次数: 1

Abstract

Objective To evaluate the geometrical effects of double keyhole loop (DKHL) and T-loop and its forces and moments during en mass space closure using finite element method. Materials and Methods A 3-dimensional finite element model of maxillary arch was created and stimulated for first premolar extraction case with 0.022 slot Roth prescription bracket. DKHL and T-loop arch wire were created using 19×25 stainless steel and was opened 1 mm for activation using 2 different methods. The study was divided into 2 groups based on the loop design, method of activation, and degree of Gable bend. The stress distribution, tooth displacement, and moment-force ratio were calculated. Result The overall stress distribution was more or less uniform in all the groups. However, maximum von Mises stress was observed in the second premolar region for both the groups. There was greater torque and vertical control in the anterior segment and better anchorage control in posterior segment with increase in degree of Gable bend for both the loops activated using ligature tie. Moment-force ratio of 8-10 was achieved for both the loops. Conclusion Therefore, DKHL was as efficient as T-loop in producing the desirable biomechanical properties during en mass space closure.
两种不同空间闭合回路的几何效应及其力力矩的有限元分析
目的用有限元法评价双锁孔环和t形环在整体空间闭合过程中的几何效应及其力和力矩。材料与方法采用0.022槽Roth处方托架对第一前磨牙拔牙病例进行上颌弓三维有限元模拟。DKHL和t型环拱丝由19×25不锈钢制成,并通过两种不同的方法打开1毫米进行激活。根据环路设计、激活方法和山墙弯曲程度将研究分为两组。计算了应力分布、齿位移和弯矩-力比。结果各组整体应力分布基本一致。然而,von Mises应力在两组的第二前磨牙区均最大。结扎法激活的两个环随着山墙弯曲程度的增加,前段的扭矩和垂直控制更大,后段的锚固控制更好。两个回路的矩力比均为8-10。结论DKHL与T-loop一样能有效地产生理想的生物力学性能。
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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