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Fibre-matrix interaction in the human annulus fibrosus

机译:人环纤维中的纤维-基质相互作用

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Although the mechanical behaviour of the human annulus fibrosus has been extensively studied, the interaction between the collagen fibres and the ground matrix has not been well understood and is therefore ignored by most constitutive models. The objective of this study is to identify the significance of the fibre-matrix interaction in the human annulus fibrosus by careful investigation of the experimental data, the theoretical constitutive models, and the numerical simulation results in the literature. Based on the experimental results from biaxial and uniaxial tests, it is shown that the mechanical behaviour of the matrix can be well simulated by an incompressible neo-Hookean type model, but the effective stiffness of the matrix depends on fibre stretch ratio, which can only be explained by fibre-matrix interaction. Furthermore, we find that this interaction takes place anisotropically between the matrix and the fibres distributed in different proportions in different directions. The dependence of the tangent stiffness of the matrix on the first invariant of the deformation tensor can also be explained by this fibre orientation dispersion.
机译:尽管已广泛研究了人环纤维的机械行为,但胶原纤维与地面基质之间的相互作用尚未得到很好的理解,因此大多数本构模型都忽略了这一点。这项研究的目的是通过仔细研究实验数据,理论本构模型和文献中的数值模拟结果,来确定纤维-基质相互作用在人纤维环中的重要性。根据双轴和单轴试验的实验结果,表明可以用不可压缩的新霍克式模型很好地模拟基体的机械性能,但是基体的有效刚度取决于纤维的拉伸比,这只能由纤维-基质相互作用来解释。此外,我们发现这种相互作用是各向异性发生在基体与以不同比例在不同方向上分布的纤维之间的。矩阵的切线刚度对变形张量的第一不变量的依赖性也可以通过这种纤维取向分散来解释。

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