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首页> 外文期刊>Acta biomaterialia >Viscoelastic properties of the cervical spinal ligaments under fast strain-rate deformations.
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Viscoelastic properties of the cervical spinal ligaments under fast strain-rate deformations.

机译:快速应变速率变形下颈椎韧带的粘弹性。

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摘要

The mechanical response of ligaments under fast strain-rate deformations is a necessary input into computational models that are used for injury assessment. However, this information frequently is not available for the ligaments that are routinely injured in fast-rate loading scenarios. In the current study, experiments were conducted at fast strain rates for the cervical spinal ligaments: the anterior longitudinal ligament, the posterior longitudinal ligament and the ligamentum flavum. Bone-ligament-bone complexes at three spine levels were harvested for mechanical testing. Displacement-controlled sub-failure uniaxial tensile tests were performed in both load-relaxation and sinusoidal conditions. A nonlinear (separable) viscoelastic model was used to examine the experimental data. An unexpected result of the modeling was that the instantaneous elastic functions could be approximated as linear for these strain rates. A five-parameter model was sufficient to characterize the ligament viscoelastic responses and had good predictive capacity under different applied loading conditions.
机译:韧带在快速应变率变形下的机械响应是用于损伤评估的计算模型的必要输入。但是,此信息通常不适用于在快速加载情况下经常受伤的韧带。在当前的研究中,对颈椎脊髓韧带的快速应变速率进行了实验:前纵韧带,后纵韧带和黄韧带。收集三个脊柱水平的骨-韧带-骨复合物进行机械测试。在载荷松弛和正弦条件下均进行了位移控制的亚失效单轴拉伸试验。非线性(可分离的)粘弹性模型用于检查实验数据。建模的意外结果是,对于这些应变率,瞬时弹性函数可以近似为线性。五参数模型足以表征韧带的粘弹性响应,并且在不同的施加载荷条件下具有良好的预测能力。

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