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Internal vs. External Chest Deformation Response to Shoulder Belt Loading, Part 1: Table-Top Tests

机译:胸部对肩带负荷的内部与外部胸部变形反应,第1部分:台式测试

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摘要

This study presents a detailed comparison of internally and externally measured chest deflections resulting from eight tests conducted on three male post mortem human subjects. A hydraulically driven shoulder belt loaded the anterior thorax under a fixed spine condition while displacement data were obtained via a high-speed 16-camera motion capture system (VICON MX™). Comparison of belt displacement and sternal displacement measured at the bone surface provided a method for quantifying effective change in superficial soft tissue depth at the mid sternum under belt loading. The relationship between the external displacement and the decrease in the effective superficial tissue depth was found to be monotonic and nonlinear. At 65 mm of mid-sternal posterior displacement measured externally, the effective thickness of the superficial tissues and air gap between the belt and the skin had decreased by 14 mm relative to the unloaded state. A regression model relating effective soft tissue compression to externally measured chest deformation was developed to provide a method for estimating skeletal deflections from externally measured chestband data.
机译:这项研究提出了内部和外部测量的胸部偏斜的详细比较,这些偏斜是由对三个男性尸体人类受试者进行的八项测试得出的。液压驱动的肩带在固定的脊柱条件下加载前胸,而位移数据则通过高速16相机运动捕捉系统(VICON MX™)获得。比较在骨表面测得的皮带移位和胸骨移位,提供了一种量化皮带载荷下胸骨中部浅表软组织深度有效变化的方法。发现外部位移与有效表浅组织深度减小之间的关系是单调的和非线性的。在外部测量的胸骨中部后移65 mm时,表层组织的有效厚度以及皮带和皮肤之间的气隙相对于未加载状态降低了14 mm。建立了将有效的软组织压缩与外部测量的胸部变形相关联的回归模型,以提供一种从外部测量的胸部带数据估算骨骼变形的方法。

著录项

  • 来源
    《Biomechanics, 2009 》|2009年|p.155-167|共13页
  • 会议地点 Detroit MI(US);Detroit MI(US)
  • 作者单位

    University of Virginia Center for Applied Biomechanics;

    University of Virginia Center for Applied Biomechanics;

    University of Virginia Center for Applied Biomechanics;

    University of Virginia Center for Applied Biomechanics;

    University of Virginia Center for Applied Biomechanics;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物力学 ;
  • 关键词

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