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颌骨的逆向建模及咀嚼肌牵动的有限元分析 被引量:2
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作者 张岳 乔海 +3 位作者 李幸芳 马宗民 李淑娴 张铁成 《科技与创新》 2020年第22期1-3,共3页
为了探究基于逆向工程建立高几何相似度的颌骨三维有限元模型的方法,研究颌骨在咀嚼肌牵引条件下的颌骨应力分布。基于CBCT扫描得到颌骨以及相应牙齿的断层图像数据,以DICOM格式导入Mimics软件中进行三维建模,再利用Geomagic Stadio软... 为了探究基于逆向工程建立高几何相似度的颌骨三维有限元模型的方法,研究颌骨在咀嚼肌牵引条件下的颌骨应力分布。基于CBCT扫描得到颌骨以及相应牙齿的断层图像数据,以DICOM格式导入Mimics软件中进行三维建模,再利用Geomagic Stadio软件修复模型、优化模型并构建数字化颌骨结构,最后将精细化颌骨模型导入到Abaqus软件中模拟颌骨的咀嚼动作,分析颌骨在咀嚼肌动的颌骨的应力状态。建立起一个含有上颌骨、下颌骨、上列牙、下列牙的三维有限元模型;分析颌骨在咀嚼肌牵动下的应力分布状况,得到颌骨与牙列的应力分布状况,Von Mises应力分布于第一、二磨牙,裸突,冠突,窝关节盘以及咀嚼肌依附部位,最大应力在第一、二磨牙部位。建立了基于逆向工程建立高几何相似度颌骨三维有限元模型的方法,得到了颌骨在咀嚼肌牵动下的应力分布。咀嚼肌牵动颌骨应力分布,为应用咀嚼对抗颌骨骨质疏松、探索颞下颌关节疾病等的力生物学机制、防治颌骨运动创伤及康复治疗提供理论支持。 展开更多
关键词 咀嚼肌 逆向工程 颌骨有限元模型 有限元分析
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Establishment of a three-dimensional finite element model for gunshot wounds to the human mandible 被引量:4
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作者 Tang Zhen Zhou Zhonghua +3 位作者 Zhang Gang ChenYubin Lei Tao Tan Yinghui 《Journal of Medical Colleges of PLA(China)》 CAS 2012年第2期87-100,共14页
Objective:To investigate the feasibility of a finite element model as an ideal research tool for human maxillofacial gunshot wounds.Methods:Mandible CT scan data on the Chinese Visible Human were imported into MIMICS ... Objective:To investigate the feasibility of a finite element model as an ideal research tool for human maxillofacial gunshot wounds.Methods:Mandible CT scan data on the Chinese Visible Human were imported into MIMICS software to obtain the surface mesh of the mandible.Then,these surface-meshed models were imported into ANSA software for automatic net generation.Elements and nodes were partitioned on the basis of the mesh to obtain a three-dimensional finite element model for the mandible with every internal parameter consistent with those of our previously developed model in the pig mandible.The finite element model was imported into LS-DYNA for computation.Finally,the LS-POST was used to complete the simulation and the measurements.Results:A three-dimensional finite element model was successfully established for gunshot wounds in the human mandible.The stress distribution and the degree of injury were simulated dynamically for shots from two types of projectiles in the mandible at one entry angle and at three impact velocities.Conclusion:Three-dimensional finite element models will become ideal research tools for treatment of ballistic wounds of the human maxillofacial region.Using this human mandibular model as a foundation,we will be able to successfully develop three-dimensional finite element models for human maxillofacial gunshot wounds. 展开更多
关键词 BIOMECHANICS MANDIBLE Wound ballistics Finite element analysis
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