University of Virginia, Center for Applied Biomechanics, Charlottesville, VA, USA.
Med Eng Phys. 2010 Mar;32(2):222-7. doi: 10.1016/j.medengphy.2009.12.001. Epub 2009 Dec 24.
Proper modeling of the human trunk requires a quantitative assessment of the stiffness of the costovertebral joints. Twelve samples (adjacent thoracic vertebrae and one rib segment) were harvested from three subjects. The ribs were loaded in the cranial-caudal direction, the ventral-dorsal direction and in torsion around the cervical rib axis. The force applied to and the displacement of the loading point on the rib were measured and used to determine the moment-angle responses. Characteristic average curves and boundary curves containing the dataset were developed. The torsion response presented a range of motion--defined as the change in the angle for an applied moment varying from -0.1 to 0.1 Nm--of 16.9+/-6.8 degrees which is more than three times the range in cranial-caudal flexion and five times the range in ventral-dorsal flexion. Statistical tests showed a significant difference between these ranges of motion. Significant inter-subject variability was observed for the cranial-caudal flexion (p<0.05) while no intra-subject variability appeared. The characteristic moment-angle responses of the joints were well represented by third order polynomials (R(2)>0.9). This study expands and supplements the limited data available in the literature. Furthermore, it provides biomechanical data (closed-form moment-angle functions) that can be directly integrated into spine-ribcage models.
人体躯干的合理建模需要对肋椎关节的刚度进行定量评估。从三个对象中采集了 12 个样本(相邻的胸椎和一段肋骨)。肋骨在头尾部方向、腹背方向和围绕颈肋轴的扭转方向上受到加载。测量施加在肋骨上的力和加载点的位移,并用于确定力矩-角度响应。开发了特征平均曲线和包含数据集的边界曲线。扭转响应的运动范围(定义为施加的力矩从-0.1 到 0.1Nm 变化时角度的变化)为 16.9+/-6.8 度,是头尾部屈曲范围的三倍多,是腹背屈曲范围的五倍多。统计测试表明这些运动范围之间存在显著差异。在头尾部屈曲方面观察到显著的组间变异性(p<0.05),而没有出现组内变异性。关节的特征力矩-角度响应很好地由三阶多项式表示(R(2)>0.9)。本研究扩展和补充了文献中有限的数据。此外,它提供了可直接集成到脊柱-肋骨模型中的生物力学数据(闭式力矩-角度函数)。