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Fatigue failure in shear loading of porcine lumbar spine segments.

机译:猪腰椎节段剪切负荷的疲劳失效。

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摘要

STUDY DESIGN.: An in vitro study on porcine spinal segments. OBJECTIVES.: To determine the differences in mechanical behavior and fatigue strength in shear loading between intact spinal segments and segments without posterior elements, and between segments in neutral and flexed positions. SUMMARY OF BACKGROUND DATA.: Limited data are available on shear strength of spinal segments. Literature suggests that shear loading can lead to failure of the posterior elements and failure of the disc, when the posterior elements cannot provide adequate protection. METHODS.: In 2 experiments, 18 and 20 spines of pigs (80 kg) were used, respectively. Shear strength of the T13-L1 segment was tested, while loaded with 1600-N compression. L2-L3 and L4-L5 segments were loaded with a sinusoidal shear between 20% and 80% of the strength of the corresponding T13-L1 segment and 1600-N compression. In experiment No. 1, the posterior elements were removed in half the segments. In experiment No. 2, half the segments were tested in the neutral position, and half were tested in 10° flexion. RESULTS.: The group without posterior elements had failure earlier than the intact group. In the group without posterior element, stiffness increased on failure; in the intact group, it decreased. In experiment No. 2, no differences between groups were found. CONCLUSIONS.: Repetitive shear loading can induce failure of porcine spinal segments, likely caused by fracture of the posterior elements, and, although repetitive anterior shear forces can also induce disc damage, this appears not to occur in intact segments, not even when flexed close to maximal. ©2006, Lippincott Williams & Wilkins, Inc.
机译:研究设计:猪脊髓节段的体外研究。目的:确定完整脊柱节段与无后段节段之间以及处于中立和屈曲位置的节段之间的力学行为和疲劳强度在剪切载荷下的差异。背景数据概述:有关脊柱节段的剪切强度的有限数据可用。文献表明,当后部元件无法提供足够的保护时,剪切载荷会导致后部元件的破坏和椎间盘的破坏。方法:在2个实验中,分别使用了18头和20头猪(80千克)。测试了T13-L1段的抗剪强度,同时承受了1600-N的压缩力。在L2-L3和L4-L5段中加载正弦剪切力,其强度为相应T13-L1段强度的20%至80%,压缩强度为1600-N。在实验1中,后半部分的后半部被切除。在实验2中,一半的片段在中立位置进行测试,另一半在10°弯曲下进行测试。结果:没有后牙的组比完整组更早出现衰竭。在没有后置元素的组中,刚度增加时会失败。在完整组中,它减少了。在实验2中,各组之间没有发现差异。结论:反复的剪切负荷可能会引起猪脊柱节段的破坏,这可能是由于后部元件的断裂所致,尽管反复的前向剪切力也会引起椎间盘的损伤,但即使完整的节段屈曲闭合,这种情况似乎也不会发生最大化。 ©2006,Lippincott Williams&Wilkins,Inc.。

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