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Effects of traction on structural properties of degenerated disc using an in vivo rat-tail model.

机译:使用体内鼠尾模型,牵引力对变性椎间盘结构特性的影响。

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STUDY DESIGN: An in vivo rat-tail model was adopted to study the structural changes of degenerated intervertebral disc after different traction protocols. OBJECTIVE: To investigate the effects of traction with different modes and magnitudes on disc with simulated degeneration. SUMMARY OF BACKGROUND DATA: Traction has been commonly used in clinical practice for treating low back pain. Its effects on disc with degeneration have not been fully investigated. METHODS: Forty-seven mature rats were used. Continuous static compression of 11 N was applied to the rat caudal 8-9 disc for 2 weeks to simulate disc degeneration. Tractions with different modes (static or intermittent) and magnitudes (1.4 N or 4.2 N) were applied to the degenerated disc for 3 weeks. The disc height was quantified in vivo on days 4, 18, and 39. The treated discs were then harvested for morphologic analysis. RESULTS: Significant decrease in disc height with degenerative morphologic changes was observed after the application of the static compression. The changes in disc height after the application of traction were found to be magnitude dependent. Continuous decrease in disc height was observed after 4.2-N traction, whereas the disc height maintained after traction of 1.4 N. However, no obvious morphologic change was found in comparison with the degenerated discs without traction. CONCLUSION: Although traction was not demonstrated to have restored disc with degeneration, traction with relatively low magnitude was found to have significant beneficial effect in maintaining disc height of degenerated disc, and it might be a potential intervention to slow down the process of degeneration. Future studies of the effects of low-magnitude traction on degenerated disc are recommended.
机译:研究设计:采用体内尾巴模型研究不同牵引方案后变性椎间盘的结构变化。目的:研究不同模式和大小的牵引力对模拟变性椎间盘的影响。背景技术概述:牵引已在临床实践中普遍用于治疗下背痛。还没有充分研究其对椎间盘退变的影响。方法:使用47只成熟大鼠。将11 N的持续静态压缩作用于大鼠尾8-9椎间盘2周,以模拟椎间盘退变。将具有不同模式(静态或间断)和大小(1.4 N或4.2 N)的牵引力应用于退化的椎间盘3周。在第4、18和39天在体内对椎间盘高度进行定量。然后收集处理过的椎间盘用于形态分析。结果:在施加静压后,观察到椎间盘高度显着下降,并伴有退行性形态改变。发现施加牵引力后椎间盘高度的变化与幅度有关。牵引4.2-N后,观察到椎间盘高度持续下降,而牵引后1.4 N保持椎间盘高度不变。但是,与没有牵引力的退化椎间盘相比,未发现明显的形态变化。结论:虽然未显示牵引力能使椎间盘退变并恢复,但发现相对较小的牵引力对保持退变椎间盘的高度有明显的有益作用,这可能是减慢椎间盘退变的潜在干预措施。建议进一步研究低强度牵引对退化椎间盘的影响。

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