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Cervical Spine Loads and Intervertebral Motions During Whiplash

机译:鞭打期间颈椎负荷和椎间运动

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Objective. To quantify the dynamic loads and intervertebral motions throughout the cervical spine during simulated rear impacts. Methods. Using a biofidelic whole cervical spine model with muscle force replication and surrogate head and bench-top mini-sled, impacts were simulated at 3.5, 5, 6.5, and 8 g horizontal accelerations of the T1 vertebra. Inverse dynamics was used to calculate the dynamic cervical spine loads at the centers of mass of the head and vertebrae (C1-T1). The average peak loads and intervertebral motions were statistically compared (P<0.05) throughout the cervical spine. Results. Load and motion peaks generally increased with increasing impact acceleration. The average extension moment peaks at the lower cervical spine, reaching 40.7 Nm at C7-T1, significantly exceeded the moment peaks at the upper and middle cervical spine. The highest average axial tension peak of 276.9 N was observed at the head, significantly greater than at C4 through T1. The average axial compression peaks, reaching 223.2 N at C5, were significantly greater at C4 through T1, as compared to head-C1. The highest average posterior shear force peak of 269.5 N was observed at T1. Conclusion. During whiplash, the cervical spine is subjected to not only bending moments, but also axial and shear forces. These combined loads caused both intervertebral rotations and translations.
机译:目的。为了量化在模拟后部撞击过程中整个颈椎的动态负荷和椎间运动。方法。使用具有肌肉力复制功能的仿生全颈椎模型以及替代头和台式微型雪橇,模拟了T1,椎骨水平加速度分别为3.5、5、6.5和8 g时的撞击情况。逆动力学用于计算头部和椎骨(C1-T1)质心的动态颈椎负荷。对整个颈椎的平均峰值负荷和椎间运动进行统计学比较(P <0.05)。结果。负荷和运动峰值通常随着冲击加速度的增加而增加。下颈椎的平均伸展力矩峰值在C7-T1达到40.7 Nm,大大超过了上颈椎和中颈椎的力矩峰值。在头部观察到最高的平均轴向张力峰值为276.9 N,明显大于从T4到C4的峰值。与头部C1相比,C5处的平均轴向压缩峰值达到223.2 N,在T4到T1时明显更大。在T1观察到最高的平均后切力峰值为269.5N。结论。在鞭打期间,颈椎不仅承受弯矩,而且承受轴向力和剪切力。这些组合的载荷引起椎间旋转和平移。

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