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Loading Induced Bone Adaptation in the Distal Radius of Women: Influence of Mechanical Environment.

机译:妇女的远端半径负荷诱导的骨适应:机械环境的影响。

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摘要

Fractures of the distal radius are a common consequence of falls in older adults. Exercise based interventions have been used to maintain and improve bone strength and prevent fall related fractures in older populations, based on evidence that bone adapts to the mechanical environment it experiences. This adaptive response takes place by bone modeling and remodeling, and is driven by the mechanical stimuli experienced by the bone. The magnitude of the adaptive response has been attributed to the characteristics of the mechanical stimulus in animals. However, the contribution of the different mechanical stimulus characteristics to the adaptive process is currently unknown in humans. The objective of this research was to understand the quantitative relationship of human bone to its mechanical environment, with the long term goal of designing and evaluating exercise interventions to prevent or slow bone loss that can lead to osteoporosis, and to improve fracture strength. A novel in-vivo wrist loading model was used to accomplish the objectives of this research. Methods for subject specific finite element model generation to predict the surface strains at the distal radius were validated with high accuracy (r=0.968, RMSE=11.1%), and were used to assess loading-induced bone strain in the subjects. An increase (or the prevention of a decrease) in ultra-distal radius size and mass was the primary adaptation response to the axial compression of the radius, and this response was more directly related to the strain magnitude than the force magnitude of the applied load. Additionally, small but significant correlations were observed between changes in bone mineral density and the mechanical measures of the applied loads at the local level within the bone. To our knowledge, this was the first time that the localized adaptation behavior of bone was tested in humans. In summary, we have developed an in vivo loading model of the human radius for the purpose of understanding the influence of mechanical environment on bone adaptation. In addition to its usefulness for exploring bone adaptation in humans, this research also acts as a step towards designing effective targeted mechanical interventions to increase (or prevent the decrease of) bone strength.
机译:older骨远端骨折是老年人跌倒的常见结果。基于骨骼适应骨骼所经历的机械环境的证据,基于锻炼的干预措施已用于维持和改善骨骼强度,并防止与老年人坠落有关的骨折。这种自适应响应是通过骨骼建模和重塑发生的,并且由骨骼所经历的机械刺激驱动。适应性反应的强度已归因于动物机械刺激的特征。然而,人类目前尚不了解不同的机械刺激特性对适应性过程的贡献。这项研究的目的是了解人体骨骼与其机械环境之间的定量关系,其长期目标是设计和评估运动干预措施,以预防或减缓可能导致骨质疏松的骨质流失并提高骨折强度。一个新颖的体内手腕负荷模型被用来完成这项研究的目的。用于受试者特定有限元模型生成以预测远端to骨表面应变的方法已得到高度验证(r = 0.968,RMSE = 11.1%),并用于评估受试者中负荷引起的骨应变。超远端半径尺寸和质量的增加(或防止减小)是对半径轴向压缩的主要适应性响应,并且该响应与应变大小直接相关,而不是所施加载荷的力大小。另外,观察到骨矿物质密度的变化与骨骼局部水平上施加的载荷的机械测量之间的微小但显着的相关性。据我们所知,这是首次在人体中测试了骨的局部适应行为。总之,我们已经开发了人体developed骨的体内负荷模型,目的是了解机械环境对骨骼适应的影响。除了对探索人类的骨骼适应性有用之外,这项研究还朝着设计有效的针对性机械干预以增加(或防止骨强度降低)迈出了一步。

著录项

  • 作者

    Bhatia, Varun.;

  • 作者单位

    University of Illinois at Chicago.;

  • 授予单位 University of Illinois at Chicago.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 98 p.
  • 总页数 98
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遥感技术;
  • 关键词

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