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从亚急性失效程度的周期性压缩载荷,探索力、重复次数和姿势对分离的猪颈椎功能性脊柱单元椎间盘高度丢失和膨出的相互作用。

Exploring interactions between force, repetition and posture on intervertebral disc height loss and bulging in isolated porcine cervical functional spinal units from sub-acute-failure magnitudes of cyclic compressive loading.

作者信息

Gooyers Chad E, Callaghan Jack P

机构信息

Department of Kinesiology, Faculty of Applied Health Sciences, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1.

Department of Kinesiology, Faculty of Applied Health Sciences, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1.

出版信息

J Biomech. 2015 Oct 15;48(13):3701-8. doi: 10.1016/j.jbiomech.2015.08.023. Epub 2015 Aug 28.

Abstract

Most in vitro studies are limited in the ability to partition intervertebral disc (IVD) height loss from total specimen height loss since the net changes in the actuator position of the materials testing system simply reflect net changes to functional spinal units (FSUs) used for testing. Three levels of peak compressive force, three cycle rates and two dynamic postural conditions were examined using a full-factorial design. Cyclic compressive force was applied using a time-varying waveform with synchronous flexion/extension for 5000 cycles. Surface scans from the anterior aspect of the IVD were recorded in a neutral and flexed posture before and after the cyclic loading protocol using a 3D laser scanner to characterise changes in IVD height loss and bulging. A significant three-way interaction (p=0.0092) between the magnitude of peak compressive force, cycle rate and degree of postural deviation was observed in cycle-varying specimen height loss data. A significant main effect of peak compressive force (p=0.0003) was also observed in IVD height loss calculated from the surface profiles of the IVD. The relative contribution of IVD height loss (measured on the anterior surface) to total specimen height loss across experimental conditions varied considerably, ranging from 19% to 58%. Postural deviation was the only factor that significantly affected the magnitude of peak AF bulge (p=0.0016). This investigation provides evidence that total specimen height loss is not an accurate depiction of cycle-varying changes in the IVD across a range of in vivo scenarios that were replicated with in vitro testing.

摘要

大多数体外研究在区分椎间盘(IVD)高度损失与总标本高度损失方面能力有限,因为材料测试系统中 actuator 位置的净变化仅仅反映了用于测试的功能性脊柱单元(FSU)的净变化。使用全因子设计研究了三个峰值压缩力水平、三个循环速率和两种动态姿势条件。使用随时间变化的波形施加循环压缩力,并同步进行屈伸,共5000个循环。在循环加载方案前后,使用3D激光扫描仪从IVD的前侧进行表面扫描,记录中立和屈曲姿势下的扫描结果,以表征IVD高度损失和膨出的变化。在随循环变化的标本高度损失数据中,观察到峰值压缩力大小、循环速率和姿势偏差程度之间存在显著的三向交互作用(p = 0.0092)。从IVD的表面轮廓计算得出的IVD高度损失中,也观察到峰值压缩力的显著主效应(p =

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