Suppr超能文献

磨牙支抗扩张器螺杆位置对牙齿位移和应力分布的影响:有限元研究。

Influence of the hyrax expander screw position on displacement and stress distribution in teeth: A study with finite elements.

机构信息

Department of Orthodontics, Juiz de Fora Federal University, Juiz de Fora, Minas Gerais, Brazil.

Department of Orthodontics, Juiz de Fora Federal University, Juiz de Fora, Minas Gerais, Brazil.

出版信息

Am J Orthod Dentofacial Orthop. 2021 Aug;160(2):266-275. doi: 10.1016/j.ajodo.2020.04.031. Epub 2021 May 15.

Abstract

INTRODUCTION

This study aimed to simulate the different positions of the hyrax appliance expander screw and evaluate tooth displacement and the stress distribution standard on the periodontal ligament using the finite element method.

METHODS

Part of the maxilla with anchorage teeth, periodontal ligament, midpalatal suture, and the hyrax appliance was modeled, and finite element method models were created to simulate 6 different screw positions. There were 2 vertical positions at distances of 20 mm and 15 mm from the occlusal plane. Another position was anteroposterior, the center of the screw placed between and equidistant from the mesial face of the first molar and the distal face of the first premolar, aligned to the center of the crown of the first molar, with the anterior edge of the screw aligned to the distal face of the first molar. A 1 mm activation of the expander screw was simulated. The displacement (total, vertical, and buccolingual) and the stress distribution on the periodontal ligament of supporting teeth in each model were registered.

RESULTS

The model simulating the expander screw in a more occlusal and anterior position presented higher displacement values and higher stress concentration, followed by the model with the screw in a more posterior but same vertical position. With the exception of the first premolar, the teeth presented cervical-apical displacement in the vestibular face and apical-cervical displacement in palatal faces. This displacement is compatible with the vestibular inclination associated with the activation of the expander screw. The first premolar presented an atypical tendency for the mesial and lingual displacement of the vestibular surface and counterclockwise rotation.

CONCLUSIONS

The supporting teeth presented a tendency for vestibular crown displacement and lingual root displacement associated with compression areas in the vestibular-cervical region and tensile strength in the linguoapical region. Placing the expander screw in a more occlusal and anterior position generated more mechanical stress transfer, resulting in greater dental displacement.

摘要

简介

本研究旨在通过有限元法模拟 Hyrax 扩弓器螺杆的不同位置,并评估牙齿位移和牙周膜的应力分布标准。

方法

对带有锚固牙、牙周膜、正中缝和 Hyrax 扩弓器的上颌部分进行建模,并创建有限元模型以模拟 6 种不同的螺杆位置。其中 2 个垂直位置分别距离咬合平面 20mm 和 15mm。另一个位置是前后向,螺杆中心位于第一磨牙近中面和第一前磨牙远中面之间且与第一磨牙牙冠中心对齐,螺杆前缘与第一磨牙远中面对齐。模拟扩弓器螺杆 1mm 的激活。记录每个模型中支撑牙的位移(总位移、垂直位移和颊舌向位移)和牙周膜的应力分布。

结果

模拟扩弓器螺杆更靠近咬合面和前牙位置的模型呈现出更高的位移值和更高的应力集中,其次是螺杆更靠后但垂直位置相同的模型。除了第一前磨牙,牙齿在颊面呈现出根尖向近中方向的位移,在腭面呈现出根尖向颈侧方向的位移。这种位移与扩弓器螺杆激活相关的颊倾相一致。第一前磨牙呈现出颊面近中和舌向位移以及逆时针旋转的非典型趋势。

结论

支撑牙呈现出与颊面冠部位移和舌侧根部位移相关的趋势,这与颊侧颈段的压缩区和舌腭段的拉伸强度有关。将扩弓器螺杆置于更靠近咬合面和前牙的位置会产生更多的机械应力传递,从而导致更大的牙齿位移。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验