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使用固定舌侧矫治器和微型种植体进行整体内收后上颌牙列初始位移和应力的评估:有限元分析

Evaluation of initial displacement and stresses in the maxillary dentition following en masse retraction using fixed lingual appliance and micro-implants: A finite element analysis.

作者信息

Aghera Dhaval, Shyagali Tarulatha R, Kambalya Prabhuraj

机构信息

Aura Dental Care, 2nd floor. Gayatri Square, Nana Mava Main Road, Rajkot, Gujarat, India.

Department of orthodontics and dentofacial orthopedics, Hitkarini dental college and hospital, Jabalpur, MP, India.

出版信息

Int Orthod. 2019 Sep;17(3):451-460. doi: 10.1016/j.ortho.2019.06.005. Epub 2019 Jul 10.

Abstract

OBJECTIVE

To evaluate and compare the stress and displacement pattern between conventional and micro-implant supported retraction in lingual orthodontic system.

MATERIALS AND METHODS

A finite element model of the maxilla, teeth, periodontal ligament, lingual-orthodontic appliance and a micro-implant complex was constructed using ANSYS 12.1 software. Two sizes of micro-implants, 6mm and 8mm, were constructed producing a simulated model of 99,190 nodes and 32,4364 elements. A retraction force of 200g was applied from an anterior retraction hook to the molar tube in the conventional model and from the micro-implants in the implant supported model. The initial displacement and stress patterns in the X-Y-Z axes were obtained using Hyper-view software.

RESULTS

The maximum von Mises stresses in the 6mm, 8mm and conventional model were 22.164 Megapascals (MPa), 28.603MPa and 16.491MPa respectively. The bucco-lingual displacement of the maxillary anteriors was greater in the 8mm implant model with 23×10mm lingual displacement observed. The least lingual displacement of 11×10mm was noted for the conventional model while a slightly higher moderate reading of 15×10mm was seen in the 6mm micro-implant supported model. The maximum displacement of the periodontal ligament was noted in the 8mm micro-implant model.

CONCLUSION

Within the limitations of this research, the 8mm micro-implant model displayed high initial stresses and greater initial displacement of the anterior teeth in the X-Y-Z coordinates in comparison to conventional retraction method.

摘要

目的

评估并比较传统正畸与微种植体支抗舌侧正畸系统内收过程中的应力和位移模式。

材料与方法

使用ANSYS 12.1软件构建上颌骨、牙齿、牙周膜、舌侧正畸矫治器及微种植体复合体的有限元模型。构建两种尺寸的微种植体,分别为6mm和8mm,生成一个包含99,190个节点和324,364个单元的模拟模型。在传统模型中,从前牙内收钩向磨牙管施加200g的内收力;在种植体支抗模型中,从微种植体施加该力。使用Hyper-view软件获取X-Y-Z轴方向的初始位移和应力模式。

结果

6mm、8mm及传统模型中的最大冯·米塞斯应力分别为22.164兆帕(MPa)、28.603MPa和16.491MPa。在8mm种植体模型中,上颌前牙的颊舌向位移更大,观察到舌侧位移为23×10mm。传统模型中舌侧位移最小,为11×10mm,而在6mm微种植体支抗模型中,舌侧位移略高,为15×10mm。牙周膜的最大位移出现在8mm微种植体模型中。

结论

在本研究的局限性范围内,与传统内收方法相比,8mm微种植体模型在X-Y-Z坐标中显示出较高的初始应力和更大的前牙初始位移。

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