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Computational inverse mechanics of a highly comminuted tibia fracture.

机译:高度粉碎的胫骨骨折的计算逆力学。

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摘要

This dissertation presents a new computational system that seeks to estimate the inverse mechanics of a bone fracture from 3D CT images. One image provides a model of an unbroken bone and a second records a fractured example of the same bone after an injury. For a bone fracture, these mechanics specify how the bone broke in terms of what object impacted the limb and how the bone fracture fragments moved over time due to that impact. To accomplish this task, novel image processing techniques are used in combination with existing computational dynamics simulation tools. Estimates of a fracture event are generated in three steps: (1) estimate a 3D model of the limb immediately before the fracture event occurred, (2) iteratively simulate the fracture dynamics to search for values of the unknown fracture variables that produce fracture patterns similar to that depicted in the observed image of the fractured limb, and (3) visualize and analyze likely fracture scenarios in a virtual 3D environment. This dissertation investigates the following two challenges: (1) obtaining a physically-meaningful estimate of the unbroken limb and (2) solving the difficult search problem for the unknown fracture event variables. Challenge one requires geometric surface models having unprecedented accuracy to be estimated for the fracture fragments which is a difficult unsolved problem. Challenge two requires conceptualizing and implementing a completely new system to estimate the fracture event. Results for the proposed methods are provided for clinical tibial plafond fracture data.
机译:本文提出了一种新的计算系统,该系统试图从3D CT图像估计骨折的逆力学。一幅图像提供了完整的骨骼模型,第二幅图像记录了受伤后同一骨骼的断裂示例。对于骨折,这些机制根据受冲击的肢体指定骨折的方式,以及由于这种撞击而导致的骨折碎片随时间移动的方式。为了完成此任务,将新颖的图像处理技术与现有的计算动力学仿真工具结合使用。骨折事件的评估分为三个步骤:(1)在发生骨折事件之前评估肢体的3D模型;(2)迭代地模拟骨折动力学,以寻找产生类似骨折模式的未知骨折变量的值(3)在虚拟3D环境中可视化和分析可能的骨折情况。本文研究了以下两个挑战:(1)获得未断裂肢体的物理意义的估计值;(2)解决未知断裂事件变量的困难搜索问题。挑战之一是需要为断裂片段估计出前所未有的精度的几何表面模型,这是一个很难解决的问题。挑战二需要概念化并实施一个全新的系统来估计断裂事件。为临床胫骨平台骨折数据提供了所提出方法的结果。

著录项

  • 作者单位

    The University of North Carolina at Charlotte.;

  • 授予单位 The University of North Carolina at Charlotte.;
  • 学科 Engineering Electronics and Electrical.;Engineering Computer.;Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 250 p.
  • 总页数 250
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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