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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Effects of Level, Loading Rate, Injury and Repair on Biomechanical Response of Ovine Cervical Intervertebral Discs
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Effects of Level, Loading Rate, Injury and Repair on Biomechanical Response of Ovine Cervical Intervertebral Discs

机译:水平,装载率,损伤和修复对卵巢椎间盘生物力学响应的影响

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摘要

A need exists for pre-clinical large animal models of the spine to translate biomaterials capable of repairing intervertebral disc (IVD) defects. This study characterized the effects of cervical spinal level, loading rate, injury and repair with genipin-crosslinked fibrin (FibGen) on axial and torsional mechanics in an ovine cervical spine model. Cervical IVDs C2–C7 from nine animals were tested with cyclic tension–compression (??240 to 100?N) and cyclic torsion (±?2° and?±?4°) tests at three rates (0.1, 1 and 2?Hz) in intact, injured and repaired conditions. Intact IVDs from upper cervical levels (C2–C4) had significantly higher torque range and torsional stiffness and significantly lower axial range of motion (ROM) and tensile compliance than IVDs from lower cervical levels (C5–C7). A tenfold increase in loading rate significantly increased torque range and torsional stiffness 4–8% (depending on amplitude) ( p ?
机译:需要脊柱前临床前大动物模型,以翻译能够修复椎间盘(IVD)缺陷的生物材料。本研究表征了颈椎水平,加载速率,损伤和修复对绵延宫颈脊柱模型中的轴向和扭转力学对Genipin交联纤维蛋白(FIBGEN)的影响。用循环张力 - 压缩(240至100μl)和循环扭转(±2°和±4°)测试,以三个速率(0.1,1和2? Hz)在完整,受伤和修复的条件下。从上宫颈水平(C2-C4)的完整IVD具有显着更高的扭矩范围和扭转刚度,并且显着降低了来自低宫颈水平(C5-C7)的IVDs的运动(ROM)和拉伸柔韧性的轴向范围。装载速率的十倍增加显着增加扭矩范围和扭转刚度4-8%(取决于幅度)(p?<0.001)。当归一化以完整的完整时,纤维显着恢复扭矩范围(纤维:0.96?±±0.14,损伤:0.88?±0.14,P?= 0.03)和轴向ROM(纤维:1.00?±±0.05,损伤:1.04?与损伤相比,0.15,p?= 0.02),值1表示完全修复。必须考虑控制生物力学评估的颈椎水平,并且纤维将一些扭转和轴向生物力学性能恢复为完整的水平。

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