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Constitutive modelling of arteries considering fibre recruitment and three-dimensional fibre distribution

机译:考虑纤维募集和三维纤维分布的动脉本构模型

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摘要

Structurally motivated material models may provide increased insights into the underlying mechanics and physics of arteries under physiological loading conditions. We propose a multiscale model for arterial tissue capturing three different scales (i) a single collagen fibre; (ii) bundle of collagen fibres; and (iii) collagen network within the tissue. The waviness of collagen fibres is introduced by a probability density function for the recruitment stretch at which the fibre starts to bear load. The three-dimensional distribution of the collagen fibres is described by an orientation distribution function using the bivariate von Mises distribution, and fitted to experimental data. The strain energy for the tissue is decomposed additively into a part related to the matrix material and a part for the collagen fibres. Volume fractions account for the matrix/fibre constituents. The proposed model only uses two parameters namely a shear modulus of the matrix material and a (stiffness) parameter related to a single collagen fibre. A fit of the multiscale model to representative experimental data obtained from the individual layers of a human thoracic aorta shows that the proposed model is able to adequately capture the nonlinear and anisotropic behaviour of the aortic layers.
机译:具有结构动机的材料模型可以提供对生理负荷条件下动脉的基本力学和物理学的更多了解。我们提出了一种用于捕获三种不同尺度的动脉组织的多尺度模型(i)单一胶原纤维; (ii)胶原纤维束; (iii)组织内的胶原蛋白网络。胶原纤维的起伏是通过概率密度函数引入的,该概率密度函数用于纤维开始承受负荷的募集拉伸。胶原纤维的三维分布通过使用双变量von Mises分布的方向分布函数描述,并拟合到实验数据中。用于组织的应变能被累加分解为与基质材料有关的部分和与胶原纤维有关的部分。体积分数占基质/纤维成分。所提出的模型仅使用两个参数,即基质材料的剪切模量和与单个胶原纤维有关的(刚度)参数。多尺度模型与从人胸主动脉各层获得的代表性实验数据的拟合表明,所提出的模型能够充分捕获主动脉层的非线性和各向异性行为。

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