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Three-dimensional finite element analysis of occlusal stress distribution in the human skull with premolar extraction

机译:用磨牙萃取中的人体颅骨咬合应力分布的三维有限元分析

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Objective: To analyze the effect of orthodontic treatment with premolar extraction on the stress distribution of the occlusal force in the human skull. Materials and Methods: A three-dimensional finite element (3D FE) model was constructed based on computed tomography scan data, and it served as the pretreatment model. For the extraction model simulating postorthodontic occlusion, the first premolar was removed in the pretreatment model, and the anterior and posterior segments were repositioned. Stress distribution was evaluated by 3D FE analysis in both models under the simulation of 1000 N for occlusal forces and 400 N for masseter muscle force. Results: The occlusal stresses were concentrated at the alveolar bone near the teeth, the infrazygomatic crest, the frontal process, the temporal process of the zygomatic bone, the infraorbital rim, the pyriform aperture region, and the pterygoid plate in both models. The von Mises stress at the pterygoid plate area was lower in the extraction model (3.53?MPa) than in the pretreatment model (5.57?MPa), while the stress at the frontal process of the maxilla was higher in the extraction model (2.32?MPa) than in the pretreatment model (2.16?MPa). Conclusions: The results indicated that the occlusal forces were transferred through the maxillonasal, maxillozygomatic, and maxillopterygoid stress trajectories and that stress distribution moved more “forward” with the orthodontic treatment with premolar extraction.
机译:目的:分析正畸治疗对初摩尔萃取对人颅骨咬合力的应力分布的影响。材料和方法:基于计算机断层摄影扫描数据构建了三维有限元(3D FE)模型,用作预处理模型。对于模拟蛋白石性闭塞的提取模型,在预处理模型中除去第一磨牙,并重新定位前后段。通过在咬合力的模拟下的两种模型中的3D FE分析评估应力分析,用于咬合力和400n用于肌肉肌肉力。结果:咬合应力在牙齿附近的肺泡骨中浓缩,infazgomatic嵴,正面过程,颧骨的时间过程,杂草骨,吡虫圆形孔径区域和翼形板中的两种模型。翼形板面积的von误判在提取模型(3.53Ωmpa)中低于预处理模型(5.57μm≤MPa),而提取模型中颌骨正面过程的应力较高(2.32? MPA)比预处理模型(2.16?MPA)。结论:结果表明,咬合力通过上颌血小胺,颌骨,颌骨卵形应力轨迹转移,并且应力分布随着初级萃取的正畸治疗而移动更多的“向前”。

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