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椎间盘环撕裂及随后椎间盘退变的力学后果。

Mechanical consequences of annular tears and subsequent intervertebral disc degeneration.

作者信息

Latham J M, Pearcy M J, Costi J J, Moore R, Fraser R D, Vernon-Roberts B

机构信息

Department of Orthopaedic Surgery and Trauma, Royal Adelaide Hospital, Australia.

出版信息

Clin Biomech (Bristol). 1994 Jul;9(4):211-9. doi: 10.1016/0268-0033(94)90001-9.

Abstract

The relationship between degeneration of the intervertebral disc and changes to its mechanics is unclear. The aim of this study was to examine, in a sheep model, the effect of creating a lesion in the outer, anterior annulus on the mechanics of the intervertebral joint complex and the disc. Forty-one 2-year-old Merino wethers were allocated randomly into a control group or an annular lesion group and additionally to non-survivors which were sacrificed immediately or survivors sacrificed 6 months later. The annular lesion group had incisions made in two non-adjacent intervertebral discs and a plate was secured across the vertebrae at one level. Mechanical tests were performed on specimens consisting of the two vertebrae, the intervening disc and associated ligaments. Stiffness of the specimens was measured in flexion, extension, and in pure torsion. The tests were conducted first on the intact intervertebral joints and then after removal of the zygapophyseal joints and the interspinous and supraspinous ligaments. The results showed that the creation of an annular lesion caused immediate changes to the mechanics of the disc. In torsion, where no axis of rotation was imposed on the joints, there was a clear reduction in stiffness compared with controls. After 6 months the discs in the lesion groups approached the stiffness of the controls. The plates had a marked effect on the stiffness of the joints in flexion and extension, but after 6 months this difference was not apparent. The mechanics of the intact joints were not affected immediately by the lesion but after 6 months they were less stiff than the controls. There was clear evidence of a progressive degenerative response in the nucleus in all discs with a lesion. The addition of a plate to limit movement did not markedly affect this biological response to the injury but there was some evidence that after 6 months there were fewer degenerative changes to the zygapophyseal joints in the plated specimens. Recovery of the mechanical integrity of the disc was more marked in the joints that were plated, supporting the concept that limiting motion of an injured intervertebral disc facilitates a healing response in the annulus.

摘要

椎间盘退变与其力学变化之间的关系尚不清楚。本研究的目的是在绵羊模型中,研究在外层前侧纤维环制造损伤对椎间关节复合体和椎间盘力学的影响。将41只2岁的美利奴阉羊随机分为对照组或纤维环损伤组,另外分为立即处死的非存活组和6个月后处死的存活组。纤维环损伤组在两个不相邻的椎间盘上做切口,并在一个节段的椎体间固定一块钢板。对由两个椎体、其间的椎间盘及相关韧带组成的标本进行力学测试。在标本的前屈、后伸和纯扭转状态下测量其刚度。测试首先在完整的椎间关节上进行,然后在去除关节突关节、棘间韧带和棘上韧带后进行。结果表明,制造纤维环损伤会立即引起椎间盘力学的变化。在未对关节施加旋转轴的扭转状态下,与对照组相比,刚度明显降低。6个月后,损伤组椎间盘的刚度接近对照组。钢板对关节在屈伸状态下的刚度有显著影响,但6个月后这种差异不明显。损伤并未立即影响完整关节的力学性能,但6个月后其刚度低于对照组。所有有损伤的椎间盘髓核均有明显的进行性退变反应。增加一块钢板限制活动并未显著影响对损伤的生物学反应,但有证据表明,6个月后,植入钢板的标本中关节突关节的退变变化较少。植入钢板的关节中,椎间盘力学完整性的恢复更为明显,这支持了限制损伤椎间盘的活动有助于纤维环愈合反应的观点。

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