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首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >Biomechanical effects of corticotomy approaches on dentoalveolar structures during canine retraction: A 3-dimensional finite element analysis
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Biomechanical effects of corticotomy approaches on dentoalveolar structures during canine retraction: A 3-dimensional finite element analysis

机译:皮瓣切开术对犬缩回期间牙槽结构的生物力学影响:三维有限元分析

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Introduction: Corticotomy has proven to be effective in facilitating orthodontic tooth movement. There is, however, no relevant study to compare the biomechanical effects of different corticotomy approaches on tooth movement. In this study, a series of corticotomy approaches was designed, and their impacts on dentoalveolar structures were evaluated during maxillary canine retraction with a 3-dimensional finite element method. Methods: A basic 3-dimensional finite element model was constructed to simulate orthodontic retraction of the maxillary canines after extraction of the first premolars. Twenty-four corticotomy approach designs were simulated for variations of position and width of the corticotomy. Displacement of the canine, von Mises stresses in the canine root and trabecular bone, and strain in the canine periodontal ligament were calculated and compared under a distal retraction force directed to the miniscrew implants. Results: A distal corticotomy cut and its combinations showed the most approximated biomechanical effects on dentoalveolar structures with a continuous circumscribing cut around the root of the canine. Mesiolabial and distopalatal cuts had a slight influence on dentoalveolar structures. Also, the effects decreased with the increase of distance between the corticotomy and the canine. No obvious alteration of displacement, von Mises stress, or strain could be observed among the models with different corticotomy widths. Conclusions: Corticotomies enable orthodontists to affect biomechanical responses of dentoalveolar structures during maxillary canine retraction. A distal corticotomy closer to the canine may be a better option in corticotomy-facilitated canine retraction.
机译:简介:皮质切开术已被证明可促进正畸牙齿移动。但是,尚无相关研究比较不同皮质切开术方法对牙齿运动的生物力学影响。在这项研究中,设计了一系列的皮质切开术方法,并使用三维有限元方法评估了它们在上颌犬缩回过程中对牙槽结构的影响。方法:建立一个基本的三维有限元模型,模拟拔除第一颗前磨牙后上颌犬的正畸回缩。模拟了二十四个皮质切开术方法设计的皮质切开术的位置和宽度的变化。计算犬的位移,犬根和小梁骨中的von Mises应力以及犬牙周膜的应变,并在针对微型螺钉植入物的远端牵拉力下进行比较。结果:远端皮质切开术切口及其组合对犬牙根牙槽牙结构表现出最接近的生物力学作用,并在犬牙根周围进行连续的外接切开术。中唇和足底切开对牙槽结构有轻微影响。而且,随着皮质切开术和犬之间的距离的增加,效果降低。在不同的皮质切开术宽度的模型之间,没有观察到位移,von Mises应力或应变的明显变化。结论:截骨术使正畸医生能够在上颌犬缩回过程中影响牙槽结构的生物力学响应。在皮质切开促进犬缩回中,更靠近犬的远端皮质切开术可能是更好的选择。

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