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Edge-based QoS for scalable networks/systems.

机译:可扩展网络/系统的基于边缘的QoS。

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摘要

Bone is subjected to cyclic loading in vivo through daily physical activities, leading to the accumulation of fatigue microdamage and, possibly, fractures. Therefore, the ability to characterize microdamage accumulation is important for understanding and assessing fracture risk. The overall objective of this study was to evaluate methods for measuring microdamage accumulation in cortical bone using both mechanical and novel, non-destructive histological techniques.;During fatigue testing, linear elastic beam theory (LEBT), the secant modulus, the tangent modulus, the unloading modulus, and creep have been used to measure the accumulation of fatigue microdamage via changes in mechanical properties. Mechanical measures for the accumulation of damage in bovine cortical bone during four-point bending fatigue were shown to be highly dependent on the initial specimen modulus and mechanical measure employed. The LEBT modulus was shown to include the combined effect of both elastic (recovered) and creep (accumulated) strain indicating that both the secant modulus and creep should be measured throughout a test to most accurately indicate damage accumulation and account for different damage mechanisms. Moreover, indentation of roller supports resulted in inflated measures of the LEBT modulus degradation and creep. The results of this study suggest that investigations of fatigue microdamage in cortical bone should avoid the use of four-point bending unless no other option is possible.;Conventional techniques used to image damage accumulation in cortical bone are inherently invasive, destructive, two-dimensional, and tedious. Therefore, micro-computed tomography was investigated as a possible non-destructive technique using a precipitated barium sulfate contrast agent to label damage. The ratio of the segmented stain volume to bone volume increased from the unloaded control group to specimens loaded in cyclic uniaxial tension to a 5 and 10% reduction in secant modulus. Segmented images showed distinct regions of bright voxels, verified to be due to the presence of BaSO4, which were indicative of fatigue cracks, as well as the accumulation of linear microcracks and diffuse damage. Local variations in mineralization were also measured by micro-CT and suggested to be useful in predicting the susceptibility of tissue to the initiation and accumulation of microdamage.
机译:骨骼通过日常体育活动在体内承受循环载荷,从而导致疲劳微损伤的积累,甚至可能导致骨折。因此,表征微损伤累积的能力对于理解和评估骨折风险很重要。这项研究的总体目标是评估使用机械和新颖的无损组织学技术来测量皮质骨微损伤累积的方法。在疲劳测试期间,线性弹性梁理论(LEBT),割线模量,切线模量,卸载模量和蠕变已用于通过机械性能的变化来测量疲劳微损伤的累积。在四点弯曲疲劳过程中,在牛皮质骨中累积损伤的机械方法显示出高度依赖于初始样品模量和所采用的机械方法。结果表明,LEBT模量包括弹性(恢复)应变和蠕变(累积)应变的综合影响,这表明割线模量和蠕变都应在整个测试过程中进行测量,以最准确地表明损伤的积累并解释不同的损伤机理。此外,滚子支撑的压痕导致LEBT模量降低和蠕变的膨胀测量。这项研究的结果表明,除非没有其他选择,否则对皮质骨疲劳微损伤的研究应避免使用四点弯曲。;用于对皮质骨损伤累积进行成像的传统技术具有固有的侵入性,破坏性,二维性和乏味。因此,作为一种可能的非破坏性技术,使用沉淀的硫酸钡造影剂来标记损伤是一种可能的非破坏性技术。从未加载的对照组到以循环单轴张力加载的标本,分段的污渍体积与骨骼体积的比率增加,割线模量降低了5%和10%。分割的图像显示出明亮的体素的不同区域,这被证实是由于BaSO4的存在,这表明存在疲劳裂纹,以及线性微裂纹的积累和弥散性损伤。微型CT也测量了矿化的局部变化,并建议用于预测组织对微损伤的发生和累积的敏感性。

著录项

  • 作者

    Jiang, Yingxin.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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