首页> 外文期刊>Journal of Cranio-Maxillofacial Surgery >Biomechanical evaluation of Chinese customized three-dimensionally printed total temporomandibular joint prostheses: A finite element analysis
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Biomechanical evaluation of Chinese customized three-dimensionally printed total temporomandibular joint prostheses: A finite element analysis

机译:中国人的生物力学评价定制三维印刷总颞下颌关节假体:有限元分析

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摘要

PurposeThis work aims to evaluate the biomechanical behavior of Chinese customized three-dimensional (3D)?printing total temporomandibular joint (TMJ) prostheses by means of finite element analysis. MethodsA 3D model was established by Mimics 18.0, then output in a stereolithography (STL) format. Two models were established to investigate the strain behaviors of an intact mandible and a one-side implanted mandible respectively. Hypermesh and LS-DYNA software were used to establish computer-aided engineering finite element models. The stress distribution on the custom-made total TMJ prosthesis and the strain distribution on the mandible were analyzed by loading maximal masticatory force. ResultsThe maximum stress on the surface of the ultra-high?molecular weight polyethylene was 19.61?MPa. With respect to the mandibular component, the maximum stress in the mandibular component was located at the anterior and posterior surface of the condylar neck, reaching 170.01?MPa. The peak von Mises stress was observed on the topside screw of the mandible, which was found to be 236.08?MPa. For the intact model, it was observed that the strain distribution was basically symmetrical. For the model with the prosthesis, the curve of strain distribution was fundamentally consistent with that in the intact mandible, except for the last 24?mm along the control line. A prominent strain decrease between 41.4% and 58.3% was observed in this area. ConclusionsChinese customized 3D-printed total TMJ prostheses exhibit uniform stress distribution without changing the behavior of the opposite side natural joint. Furthermore, the prostheses have a great potential to be improved in design and materials with a promising future.
机译:目的的工作旨在评估中国定制三维(3D)的生物力学行为吗?通过有限元分析印刷总颞下颌关节(TMJ)假体。 Methoda通过模拟模仿建立了3D模型,然后以立体光刻(STL)格式输出。建立了两种模型,以研究完整下颌骨的应变行为和单一植入下颌骨。 HyperMesh和LS-Dyna软件用于建立计算机辅助工程有限元模型。通过加载最大咀嚼力分析定制总TMJ假体的应力分布和下颌骨上的应变分布。结果在超高α的表面上的最大应力为19.61μm≤MPa。关于下颌组分,下颌组分中的最大应力位于髁盖颈部的前表面和后表面,达到170.01μm≤MPa。在下颌骨的顶部螺钉上观察到峰值压力的峰值压力,这被发现是236.08℃。对于完整模型,观察到应变分布基本对称。对于具有假体的模型,应变分布的曲线与完整下列线的曲线均一致,除了沿着控制线的最后24毫米。在该地区观察到突出的应变降低41.4%和58.3%。结论Chinese定制的3D印刷总TMJ假体在不改变相对侧自然关节的行为的情况下表现出均匀的应力分布。此外,假肢具有巨大的潜力,可以在具有有前途的未来的设计和材料中得到改善。

著录项

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  • 作者单位

    Department of Oral and Maxillofacial Surgery Ninth People's Hospital College of Stomatology;

    Department of Oral and Maxillofacial Surgery Ninth People's Hospital College of Stomatology;

    Department of Oral and Maxillofacial Surgery Ninth People's Hospital College of Stomatology;

    Department of Oral and Maxillofacial Surgery Ninth People's Hospital College of Stomatology;

    Department of Oral and Maxillofacial Surgery Ninth People's Hospital College of Stomatology;

    Department of Oral and Maxillofacial Surgery Ninth People's Hospital College of Stomatology;

    Department of Oral and Maxillofacial Surgery Ninth People's Hospital College of Stomatology;

    Department of Oral and Maxillofacial Surgery Ninth People's Hospital College of Stomatology;

    National Die and Mold CAD Engineering Research Center Shanghai Jiao Tong University;

    Department of Oral and Maxillofacial Surgery Ninth People's Hospital College of Stomatology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 口腔科学;
  • 关键词

    Total temporomandibular joint prostheses; Chinese customized; Stress; Bone strain;

    机译:总颞下颌关节假体;中国定制;压力;骨菌株;

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