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Computer and model methods for the biomechanical analyses of mandibular bone and prosthodontic devices.

机译:用于对下颌骨和修复装置进行生物力学分析的计算机和模型方法。

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摘要

This dissertation is a collection of five manuscripts which have been submitted individually to three refereed technical journals. Each of these papers represent a finite element modeling project dealing with a variety of problems related to the biomechanical analysis of the calcified tissue of the mandible and of selected prosthodontic devices.; The first paper of this dissertation demonstrates a methodology for a model of a human mandible. It included a methodology for the acquisition of biomechanical data associated with the maxillofacial complex and created a test mechanism for the use of computed tomography as a tool for bone model development. The model could serve as a basis for multiple studies employing the inherent power of the finite element method.; The three papers on intraoral bridge analyses provided a series of studies of overdenture bars which clinically exhibit specific mechanical failure trends. These analyses investigated the scientific rationale for the observations made by the clinical community so that recommendations on design might be made to minimize clinical failures in the future. The results of these studies can be incorporated into a restored mandibular model that includes intraoral restorations in future studies. In having a thorough understanding of the biomechanical behavior of these devices prior to their introduction in a significantly more complex study, some of the experimental variables might be reduced.; The final paper in this dissertation is specific to the technical methods for a progression of finite element research capabilities using computed tomography. The combined use of computer automation of data acquisition from the CT information greatly expedited model development. Using the computer to acquire data directly from the computed tomography images decreased direct investigator interactions and, therefore, some inaccuracies. Automated digitization of CT images decreased the approximations made when digitization was done manually.; The studies presented in this dissertation, in concert with the results of previous investigators, qualify and quantify the mechanical stress and strain environment in mandiblar bone and prosthodontic devices affixed to the bony structures. In addition, significant techniques useful to the creation of analytical (finite element) models have emerged from these studies.
机译:本文是五篇手稿的集合,这些手稿已分别提交给三本推荐的技术期刊。这些论文中的每篇论文都代表一个有限元建模项目,该项目处理与下颌骨钙化组织和所选义齿修复装置的生物力学分析有关的各种问题。本论文的第一篇论文演示了一种用于人类下颌骨模型的方法。它包括一种用于获取与颌面复合体相关的生物力学数据的方法,并创建了一种使用计算机断层扫描作为骨骼模型开发工具的测试机制。该模型可以作为利用有限元方法的固有能力进行多次研究的基础。关于口内牙桥分析的三篇论文提供了一系列覆盖义齿的研究,这些义齿在临床上表现出特定的机械破坏趋势。这些分析调查了临床界所观察到的科学原理,以便可以就设计提出建议,以减少将来的临床失败。这些研究的结果可纳入未来的研究中包括口腔内修复的下颌修复模型中。在对这些设备进行更为复杂的研究之前,对它们的生物力学行为有透彻的了解,可以减少一些实验变量。本文的最后一篇论文专门针对利用计算机断层摄影技术发展有限元研究能力的技术方法。从CT信息中获取数据的计算机自动化的结合使用大大加快了模型开发的速度。使用计算机直接从计算机断层扫描图像中获取数据减少了直接的研究人员交互作用,因此减少了一些误差。 CT图像的自动数字化降低了手动进行数字化时的近似值。本文的研究结果与先前的研究者们的研究结果相一致,对下颌骨和固定在骨结构上的修复装置的机械应力和应变环境进行了鉴定和量化。此外,这些研究还产生了对创建分析(有限元)模型有用的重要技术。

著录项

  • 作者

    McLoughlin, Sean William.;

  • 作者单位

    The University of Alabama at Birmingham.;

  • 授予单位 The University of Alabama at Birmingham.;
  • 学科 Engineering Biomedical.; Health Sciences Dentistry.; Applied Mechanics.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;口腔科学;应用力学;
  • 关键词

  • 入库时间 2022-08-17 11:49:52

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