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首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >Stress and displacement between maxillary protraction with miniplates placed at the infrazygomatic crest and the lateral nasal wall: A 3-dimensional finite element analysis
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Stress and displacement between maxillary protraction with miniplates placed at the infrazygomatic crest and the lateral nasal wall: A 3-dimensional finite element analysis

机译:置于in下c和鼻旁侧壁的微型钢板在上颌前突之间的应力和位移:三维有限元分析

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摘要

Introduction: The purpose of this study was to compare the pattern and amount of stress and displacement between maxillary protraction with miniplates placed at the infrazygomatic crest and the lateral nasal wall. Methods: Three-dimensional finite element models for the skull and the curvilinear type of miniplate were constructed. After a protraction force (500 g/side) was applied to the distal end of the miniplate with a forward and 30° downward vector to the maxillary occlusal plane, stress distributions in the circummaxillary sutures and displacements of the surface landmarks were analyzed. Results: There was a difference in the maximum stress distribution area according to the site of the miniplate: infrazygomatic crest and middle part of the maxilla in the infrazygomatic crest and paranasal area adjacent to the pyriform aperture in the lateral nasal wall. Stress values of the frontonasal, frontomaxillary, zygomaticomaxillary, and pterygomaxillary sutures were greater in the infrazygomatic crest than in the lateral nasal wall. The site of the miniplate produced differences in the major displacement areas: infrazygomatic crest, maxillary dentition, anterior maxilla, and upper part of the maxillary tuberosity in the infrazygomatic crest and the lateral nasal wall, maxillary dentition, anterior maxilla, and lower part of the maxillary tuberosity in the lateral nasal wall. The lateral nasal wall exhibited forward, downward, and outward displacements of ANS, Point A, and prosthion. However, the infrazygomatic crest showed forward and upward displacements of ANS, Point A, and prosthion, and outward displacement of the zygomatic process of the maxilla and the maxillary process of the zygomatic bone. Conclusions: The site of miniplate placement should be considered to obtain proper stress and displacement values in different areas with maxillary hypoplasia.
机译:简介:本研究的目的是比较在fra下pro和鼻外侧壁上放置小板的上颌牵引与上颌突出之间的应力,位移和模式。方法:建立了三维有限元模型的头骨和曲线型的微型板。在向上颌骨咬合面施加向前和向下30°的矢量后,将牵引力(500 g /侧)施加到微型钢板的远端,分析了上颌缝线中的应力分布和表面标志的位移。结果:根据小板的部位,最大应力分布区域存在差异:in下rest和上鼻中部在fra下and和鼻旁侧壁的梨状孔附近。在fra下rest中,额鼻,前额、,突,上缝合的应力值大于鼻外侧壁。微型板的位置在主要移位区域产生了差异:differences下go,上颌牙列,前上颌和,下and以及鼻外侧侧壁上颌结节的上部,上颌牙列,上颌前以及下颌的下部鼻侧壁外侧上颌结节。鼻外侧壁表现出ANS,A点和假体的向前,向下和向外移位。然而,in下rest表现出ANS,A点和假体的向前和向上移位,以及上颌突和the骨上突的向外移位。结论:在上颌骨发育不全的不同区域,应考虑小板放置的部位以获得适当的应力和位移值。

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