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首页> 外文期刊>Biomechanics and modeling in mechanobiology >Effect of collagen fibre orientation on intervertebral disc torsion mechanics
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Effect of collagen fibre orientation on intervertebral disc torsion mechanics

机译:胶原纤维取向对椎间盘扭转力学的影响

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摘要

The intervertebral disc is a complex fibro-cartilaginous material, consisting of a pressurized nucleus pulposus surrounded by the annulus fibrosus, which has an angle-ply structure. Disc injury and degeneration are noted by significant changes in tissue structure and function, which significantly alters stress distribution and disc joint stiffness. Differences in fibre orientation are thought to contribute to changes in disc torsion mechanics. Therefore, the objective of this study was to evaluate the effect of collagen fibre orientation on internal disc mechanics under compression combined with axial rotation. We developed and validated a finite element model (FEM) to delineate changes in disc mechanics due to fibre orientation from differences in material properties. FEM simulations were performed with fibres oriented at throughout the disc (uniform by region and fibre layer). The initial model was validated by published experimental results for two load conditions, including axial compression and axial rotation. Once validated, fibre orientation was rotated by or towards the horizontal plane, resulting in a decrease in disc joint torsional stiffness. Furthermore, we observed that axial rotation caused a sinusoidal change in disc height and radial bulge, which may be beneficial for nutrient transport. In conclusion, including anatomically relevant fibre angles in disc joint FEMs is important for understanding stress distribution throughout the disc and will be important for understanding potential causes for disc injury. Future models will include regional differences in fibre orientation to better represent the fibre architecture of the native disc.
机译:椎间盘是一种复杂的纤维状物质,由由环形纤维囊围绕的加压核瓜素组成,其具有角度纤维结构。通过组织结构和功能的显着变化,注意到盘损伤和变性,这显着改变了应力分布和盘关节刚度。纤维取向的差异被认为有助于磁盘扭转力学的变化。因此,本研究的目的是评估胶原纤维取向对压缩下的内盘力学的影响,轴向旋转。我们开发并验证了一个有限元模型(FEM)以描绘由于纤维取向因材料特性差异而导致的盘力学的变化。在整个盘中取向的纤维进行有限元模拟(通过区域和纤维层均匀)。通过发布的两个负载条件的实验结果验证了初始模型,包括轴向压缩和轴向旋转。一旦验证,纤维取向由水平面或朝向水平面旋转,导致盘关节扭转刚度的减小。此外,我们观察到轴向旋转引起圆盘高度和径向凸起的正弦变化,这可能是有益的营养传输。总之,在光盘关节有限分子中的解剖学相关纤维角对于了解整个光盘的应力分布很重要,并且对于理解椎间盘损伤的潜在原因是重要的。未来的模型将包括纤维方向的区域差异,以更好地代表本机盘的光纤架构。

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