首页> 外文期刊>Clinical biomechanics >Vertebral fractures and separations of endplates after traumatic loading of adolescent porcine spines with experimentally-induced disc degeneration.
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Vertebral fractures and separations of endplates after traumatic loading of adolescent porcine spines with experimentally-induced disc degeneration.

机译:青春期猪脊柱外伤后椎体骨折和终板分离,实验性椎间盘退变。

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BACKGROUND: Abnormalities of the intervertebral discs have been found in a high frequency among young elite athletes. Several studies have also reported that the adolescent spine, especially the vertebral growth zones, is vulnerable to trauma. However, there is incomplete knowledge regarding the injury mechanism of the growing spine. In this study, the injury patterns of the adolescent porcine spine with disc degeneration were examined. METHODS: Twenty-four male pigs were used. A degenerative disc was created by drilling a hole through the cranial endplate of a lumbar vertebra into the disc. Two months later the animals were sacrificed and the degenerative functional spinal units (segments) were harvested. The segments were divided into three groups and exposed to axial compression, flexion compression or extension compression to failure. The load and angle at failure were measured for each group. The segments were examined with magnetic resonance imaging and plain radiography before and after the loading and finally examined macroscopically and histologically. FINDINGS: The degenerated segments required considerably more compressive load to failure than non-degenerated segments. Creating a flexion injury required significantly more load than an extension injury. Fractures and/or separations of the endplates from the vertebral bodies were seen at the margins of the endplates and in the growth zone. Only severe separations and fractures could be seen on plain radiography and magnetic resonance imaging. INTERPRETATION: The weakest part of the adolescent porcine lumbar spine with experimentally-induced degeneration, when loaded in axial compression, flexion compression or extension compression, was the growth zone, and, to a lesser extent, the endplate. Degenerated discs seem to withstand higher mechanical loads than non-degenerated discs, probably due to altered stress distribution.
机译:背景:在年轻的精英运动员中,椎间盘异常的发生频率很高。几项研究还报告说,青春期的脊椎,尤其是椎骨生长区,容易受到创伤。但是,关于成长中的脊柱的损伤机制尚不完全了解。在这项研究中,检查了青少年猪脊柱椎间盘退变的损伤方式。方法:使用24头公猪。通过在腰椎的颅端板中钻一个孔进入椎间盘中,形成变性椎间盘。两个月后,处死动物并收集退化的功能性脊柱单位(节段)。这些段被分成三组,并经受轴向压缩,弯曲压缩或延伸压缩以破坏。测量每组的载荷和破坏角度。在加载之前和之后,通过磁共振成像和X线平片检查这些节段,最后进行肉眼和组织学检查。结果:与未退化的段相比,退化的段需要更大的压缩载荷才能破坏。产生屈曲损伤需要比伸伤更大的负荷。在终板的边缘和生长区中可以看到终板与椎骨的断裂和/或分离。在普通射线照相和磁共振成像中只能看到严重的分离和破裂。解释:以轴向压缩,屈曲压缩或伸展压缩加载时,实验性变性的青少年猪腰椎的最薄弱部分是生长区,在较小程度上是终板。退化的光盘似乎比未退化的光盘承受更高的机械负载,这可能是由于应力分布发生了变化。

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