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The effect of cyclic compression on the mechanical properties of the inter-vertebral disc: An in vivo study in a rat tail model.

机译:循环压缩对椎间盘机械性能的影响:在大鼠尾巴模型中的体内研究。

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Objective. To assess the changes in the mechanical properties of inter-vertebral discs in vivo following static and cyclic compressive loading of different frequencies.Design. An in vivo biomechanical study using a rat-tail model of the inter-vertebral disc.Background. Mechanical loading has been suggested as playing a major role in the etiology of disc degeneration, but the relationship is still not fully understood.Methods. Sixty Sprague-Dawley rats were subject to daily compressive stress via pins inserted in the 6th and 7th caudal vertebrae over a two-week loading period. Animals were randomly divided into a sham group (pin insertion, no loading), a static loading group, or cyclic loading groups of 0.5, 1.5, or 2.5 Hz. Loading was applied for 1 h each day from the 3rd to 17th day following pin insertion, and the angular compliance, angular laxity, and inter-pin distance were measured in vivo at days 0, 3, 10 and 17.Results. Changes in the inter-vertebral disc height depended on the frequency of loading, with the decrease in disc height in the static compression group significantly greater than that in all other groups, whereas the decrease in the 1.5 Hz cyclic compression group was significantly smaller than that in all other compression groups.Conclusions. Changes in disc properties depend on both the total load exposure and the frequency of loading. Cyclic loading in general produced less marked changes than static loading, but loading at particular frequencies may result in more severe changes.Relevance Previous studies have shown the in vivo changes in the mechanical properties of inter-vertebral discs to depend on the magnitude and duration of loading. In this study, a frequency dependent response to cyclic loading is also demonstrated.
机译:目的。评估不同频率的静态和循环压缩载荷后体内椎间盘机械特性的变化。设计。使用椎间盘鼠尾模型的体内生物力学研究。有人认为机械负荷在椎间盘退变的病因中起主要作用,但这种关系仍未完全弄清。 60只Sprague-Dawley大鼠在两周的负荷期间,通过插入第6和第7尾椎骨的销钉承受每日压应力。将动物随机分为假组(插针,无负荷),静态负荷组或0.5、1.5或2.5 Hz的循环负荷组。销钉插入后第3天至第17天每天施加载荷1 h,并在第0、3、10和17天在体内测量角度顺应性,角松驰度和销钉间距离。椎间盘高度的变化取决于负荷的频率,静态压迫组的椎间盘高度降低明显大于所有其他组,而1.5 Hz循环压迫组的椎间盘高度降低明显小于所有其他组。在所有其他压缩组中。光盘特性的变化取决于总负载暴露量和加载频率。一般而言,循环载荷产生的变化少于静态载荷,但在特定频率下的载荷可能导致更严重的变化。相关性先前的研究表明,椎间盘力学性质的体内变化取决于椎间盘的大小和持续时间。加载中。在这项研究中,还证明了频率对循环载荷的响应。

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