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Human Cervical Motion Segment Flexibility and Facet Capsular Ligament Strain under Combined Posterior Shear, Extension and Axial Compression

机译:人类颈椎运动段灵活性和面部荚膜韧带韧带菌株在组合后剪切,延伸和轴向压缩下

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The cervical facet capsular ligaments are thought to be an important anatomical site of whiplash injury, although the mechanism by which these structures may be injured during whiplash remains unclear. The purpose of this study was to quantify the intervertebral flexibility and maximum principal strain in the facet capsular ligament under combined shear, bending and compressive loads similar to those which occur during whiplash loading. Two motion segments (C3-4 and C5-6) from seven female donors (50 ± 10 years) were exposed to quasi-static posterior shear loads of 135 N applied to the superior vertebra on four occasions while under compressive axial preloads of 0 N, 45 N, 197 N and 325 N. Vertebral body motions and the full Lagrangian strain field in the right facet capsular ligament were measured using stereophotogrammetry. After flexibility testing, the right facet joint of each motion segment was isolated and failed in posterior shear. Differences in the kinematic response of the vertebrae and maximum principal strain in the capsular ligaments under the four axial preloads were tested using repeated-measures ANOVA's for each load step. Although significant differences were observed at two axial load levels in the kinematic sequence (197 N and 325 N), neither the regressed flexibility nor the maximum principal strain in the facet capsular ligament varied significantly with axial compression (p > 0.14). Maximum principal strain during the flexibility tests reached 61 ± 33 percent of the maximum principal strain observed in sub-catastrophic failures of the isolated joints. Two of the thirteen specimens reached strains in their flexibility tests which were larger than their corresponding strains at sub-catastrophic failure in the failure tests. These results suggest that the cervical facet capsular ligaments may be injured under combined shear, bending and compression load levels that occur in rear-end impacts.
机译:宫颈面荚膜韧带被认为是鞭打损伤的重要解剖部位,尽管这些结构在鞭打期间可能会受伤的机制仍不清楚。本研究的目的是在类似于鞭打载荷期间发生的组合剪切,弯曲和压缩荷载,量化椎间荚膜韧带中的椎间柔性和最大主要菌株。从七个雌性供体(50±10岁)的两个运动段(C3-4和C5-6)暴露于施加到高级椎骨的准静态后剪切载量,同时在0 n的压缩轴向预载荷下施加到高级椎骨中使用立体式测量,测量45 n,197 n和325 n。椎体运动和右侧荚膜韧带的全拉格朗日应变场。在灵活性测试之后,隔离每个运动段的右侧面关节并在后剪中失效。使用重复测量Anova对每个负载步骤进行测试,测试椎骨叶片在四个轴向预载荷下的椎骨韧带中的运动响应和最大主要菌株的差异。虽然在运动序列(197 n和325n)中在两个轴向载荷水平下观察到显着差异,但是在轴向压缩(p> 0.14)中,面部囊韧带中的最大主应变均未变化。灵活性测试期间的最大主要应变达到隔离接头的次灾区失败中观察到的最大主要菌株的61±33%。十三标本中的两种在其灵活性测试中达到了菌株,其比其失效测试中的子灾难性失败的相应菌株大。这些结果表明,宫颈面荚膜韧带韧带在后端冲击中发生的剪切,弯曲和压缩载荷水平可能受伤。

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