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A Technique for Dynamic Tensile Testing of Human Cervical Spine Ligaments

机译:一种用于人颈椎韧带的动态拉伸试验技术

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An experimental study is undertaken to examine the dynamic stress-strain characteristics of ligaments from the human cervical spine (neck). Tests were conducted using a tensile split Hopkinson bar device and the engineering strain rates imposed were of the order of 10~(2)approx10~(3)/s. As ligaments are extremely soft and pliable, specialized test protocols applicable to Hopkinson bar testing were developed to facilitate acquisition of reliable and accurate data. Seven primary ligaments types from the cervical spines of three male cadavers were subjected to mechanical tests. These yielded dynamic stress-strain curves which could be approximated by empirical equations. The dynamic failure stress/load, failure stain/deformation, modulus/stiffness, as well as energy absorption capacity, were obtained for the various ligaments and classified according to their location, the strain rate imposed and the cadaveric source. Compared with static responses, the overall average dynamic stress-strain behavior for each type of ligament exhibited an elevation in strength but reduced elongation.
机译:进行了一种实验研究,以检查人颈椎(颈部)的韧带的动态应力 - 应变特征。使用拉伸分裂霍普金森棒装置进行试验,施加的工程应变率为10〜(2)约10〜(3)/ s。由于韧带是极其柔软和柔韧的,因此开发了适用于霍普金森棒测试的专业测试协议,以便于获取可靠和准确的数据。从三个雄性尸体的颈刺的七种主要韧带类型进行机械测试。这些产生的动态应力 - 应变曲线可以通过经验方程来近似。为各种韧带获得动态故障应力/负荷,失败污渍/变形,模量/刚度以及能量吸收能力,并根据其位置进行分类,施加应变率和尸体源。与静态反应相比,每种韧带的总体平均动态应力 - 应变行为表现出强度但伸长率降低的升高。

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