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节段间水平的弯曲力矩差异与牛尾椎间盘中的微观结构改变有关。

Level-wise differences in lateral bending moment are associated with microstructural alterations in bovine caudal intervertebral discs.

机构信息

Department of Mechanical & Aeronautical Engineering, Clarkson University, Potsdam, NY 13699, USA.

Department of Physical Therapy, Clarkson University, Potsdam, NY 13699, USA.

出版信息

J Exp Biol. 2020 Oct 29;223(Pt 20):jeb229971. doi: 10.1242/jeb.229971.

Abstract

Despite its common use as a laboratory model, little is known about the forces and moments applied to the bovine caudal intervertebral disc. Such aspects are crucial, as intervertebral disc tissue is known to remodel in response to repeated loading. We hypothesized that the magnitude of loading from muscle contraction during a typical lateral bending motion varies between caudal levels and is accompanied by variations in tissue microstructure. This hypothesis was tested by estimating level-wise forces and bending moments using two independent approaches: a dynamic analytical model of the motion and analysis of muscle cross-sections obtained via computed tomography. Microstructure was assessed by measuring the collagen fiber crimp period in the annulus fibrosus, and composition was assessed via quantitative histology. Both the analytical model and muscle cross-sections indicated peak bending moments of over 3 N m and peak compressive force of over 125 N at the c1c2 level, decreasing distally. There was a significant downward trend from proximal to distal in the outer annulus fibrosus collagen crimp period in the anterior and posterior regions only, suggesting remodeling in response to the highest lateral bending moments. There were no observed trends in composition. Our results suggest that although the proximal discs in the bovine tail are subjected to forces and moments from muscle contraction that are comparable (relative to disc size) to those acting on human lumbar discs, the distal discs are not. The resulting pattern of microstructural alterations suggests that level-wise differences should be considered when using bovine discs as a research model.

摘要

尽管牛尾的椎间盘在实验室中被广泛应用,但人们对作用于该椎间盘的力和力矩知之甚少。这些方面至关重要,因为已知椎间盘组织会对重复加载做出重塑反应。我们假设,在典型的侧屈运动中,肌肉收缩产生的加载力在尾部水平之间变化,并且伴随着组织微观结构的变化。通过两种独立的方法来测试这一假设:运动的动态分析模型和通过计算机断层扫描获得的肌肉横截面分析。通过测量纤维环中胶原纤维的卷曲周期来评估微观结构,并通过定量组织学评估组成。分析模型和肌肉横截面都表明,在 c1c2 水平,弯曲力矩峰值超过 3N·m,压缩力峰值超过 125N,向尾部逐渐减小。在前部和后部,仅在外纤维环中,从近端到远端,胶原纤维卷曲周期呈显著下降趋势,这表明了对最高侧屈力矩的重塑反应。组成没有观察到趋势。我们的研究结果表明,尽管牛尾的近端椎间盘受到的来自肌肉收缩的力和力矩(相对于椎间盘大小)与人类腰椎椎间盘相似,但远端椎间盘则不然。由此产生的微观结构改变模式表明,在使用牛椎间盘作为研究模型时,应考虑水平差异。

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