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Biomechanical properties and patterns of injury in the human cervical spine

机译:人体颈椎的生物力学特性和损伤方式

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The nonlinear load-displacement response and strength of the mid- (C2-C5) and lower-cervical (C5-T1) regions of the spine were determined for combinations of sagittal loads in vitro. A multiaxial testing apparatus was designed and constructed for this purpose. In tests of nineteen segments, it was found that all specimens were more stiff in compression than in tension, and more stiff in posterior shear than in anterior shear. The mid-cervical region was more still in compression than the lower cervical region. In tests to failure, six of seven mid-cervical specimens failed from flexion alone, while combined compression-flexion was required to fail five of eight lower cervical specimens. Post-test dissections revealed no regional differences in patterns of failure. Data suggest that consideration of three regions of the cervical spine should facilitate the assessment of the risk and the diagnosis of injury.
机译:对于体外矢状载荷的组合,确定了脊柱中部(C2-C5)和子宫颈下部(C5-T1)区域的非线性载荷位移响应和强度。为此设计和制造了一种多轴测试设备。在十九个部分的测试中,发现所有标本的压缩刚度都比拉伸硬,而后切力比前切要高。子宫颈中部比子宫颈下部更受压。在失败测试中,七个子宫颈中段标本中有六个仅因屈曲而失败,而要求组合压缩屈曲以使八个下子宫颈标本中的五个失败。测试后的解剖显示失败模式没有区域差异。数据表明,考虑颈椎的三个区域应有助于评估风险和损伤诊断。

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