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PowerScope 2功能性矫治器:其对下颌骨作用的三维有限元模拟

PowerScope 2 functional appliance: A 3D finite element simulation of its action on the mandible.

作者信息

Al Hamdany Afrah Khazal, Hasan Lamiaa A, Alrawi Mohammed Najeeb Abdullah, Alhajar Emad Hazim Kasim

机构信息

Department of Pedodontics, Orthodontics, and Prevention /College of Dentistry/Mosul University, Iraq.

Department of Mechanical Engineering, College of Engineering, University of Mosul, Mosul, Iraq.

出版信息

J Oral Biol Craniofac Res. 2023 Mar-Apr;13(2):299-305. doi: 10.1016/j.jobcr.2023.02.014. Epub 2023 Mar 1.

Abstract

UNLABELLED

PowerScope 2 is a fixed functional appliance for patients with Class II malocclusion and a retrognathic mandible, that has recently received attention due to its pronounced advantages, for both orthodontists and patients.

OBJECTIVE

of study: This study evaluated the action of the PowerScope 2 appliance for correcting Class II malocclusion and the stresses and displacement of the mandible during loading using three-dimensional finite element analysis (FEA). The sites of the mandibular skeletal and/or dental corrections were also distinguished.

MATERIALS AND METHODS

Using the AutoCAD (2010) Program, a 3D model of the human mandible with teeth was created based on a CT image of a 20-yr-old patient Orthodontic stainless-steel brackets with Standard Edgewise (0.022 in) slots bonded to five mandibular teeth and inserted into a bounded tube on the first molar were simulated. A rectangular archwire (0.019 × 0.025 in) ligated the brackets. The created models were uploaded to the Autodesk Inventor Professional Computer Program (FE) version (2020).

RESULTS

The FEA presented the three-dimensional results qualitatively and quantitatively as von Mises stress and displacement. The colour ruler on the upper left side demonstrates the stress and displacement distribution pattern of the mandible, with the minimum value in blue and the maximum value in red. Mandibular movement was achieved three-dimensionally. There was obvious sagittal forward mandibular movement, and high stress was observed at the chin prominence (the pogonion). In the transverse plane, the mandible was highly bent buccally, especially at the gonial angle and antegonial notch. In the vertical plane, the highest ranges of mandibular movements were seen in the chin, the anterior part of the mandibular body, and the associated dentoalveolar region.

CONCLUSIONS

The results of this FEA, PowerScope 2 functional appliance proved to be effective as a Class II malocclusion corrector. Its mode of action on the mandible was achieved in three planes of space, and its orthodontic effects were gained dentally and skeletally. An bbvious sagittal forward mandibular movement was observed, particularly at the chin prominence. Apparent buccal bending, especially at the gonial angle and antegonial notch, was observed. Vertically, the chin and anterior part of the mandible, with the associated dentoalveolar structures, were clearly stressed under the action of this appliance.

摘要

未标注

PowerScope 2是一种用于安氏II类错颌畸形和下颌后缩患者的固定功能性矫治器,由于其显著优势,最近受到了正畸医生和患者的关注。

研究目的

本研究使用三维有限元分析(FEA)评估PowerScope 2矫治器矫正安氏II类错颌畸形的作用以及加载过程中下颌骨的应力和位移。还区分了下颌骨骨骼和/或牙齿矫正的部位。

材料与方法

使用AutoCAD(2010)程序,基于一名20岁患者的CT图像创建了带有牙齿的人类下颌骨三维模型。模拟了将带有标准方丝弓(0.022英寸)槽沟的正畸不锈钢托槽粘结到五颗下颌牙齿上,并插入第一磨牙上的有界管中。用一根矩形弓丝(0.019×0.025英寸)结扎托槽。将创建的模型上传到Autodesk Inventor Professional计算机程序(FE)版本(2020)。

结果

有限元分析以定性和定量的方式呈现了三维结果,即等效应力和位移。左上角的彩色标尺展示了下颌骨的应力和位移分布模式,最小值为蓝色,最大值为红色。下颌骨的移动在三维空间中得以实现。下颌骨明显向前方矢状移动,并在颏隆突(颏点)处观察到高应力。在横平面上,下颌骨向颊侧高度弯曲,尤其是在角点和角前切迹处。在垂直平面上,下颌骨移动范围最大的部位见于颏部、下颌体前部以及相关的牙槽区域。

结论

本有限元分析结果表明,PowerScope 2功能性矫治器作为安氏II类错颌畸形矫治器是有效的。其对下颌骨的作用方式在三维空间平面上得以实现,其正畸效果在牙齿和骨骼方面均有体现。观察到明显的下颌骨向前方矢状移动,尤其是在颏隆突处。观察到明显的颊侧弯曲,尤其是在角点和角前切迹处。在垂直方向上,在该矫治器的作用下,颏部和下颌骨前部以及相关的牙槽结构受到明显应力作用。

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