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Continuous versus discrete (invariant) representations of fibrous structure for modeling non-linear anisotropic soft tissue behavior

机译:用于建模非线性各向异性软组织行为的纤维结构的连续与离散(不变)表示形式

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摘要

The non-linear anisotropic mechanical response of soft tissue is largely dependent on the structure of the underlying collagen network. Collagen structure has been successfully quantified for various tissue types in terms of a locally defined fiber orientation distribution function. The continuous distribution function derived from structural data can be directly incorporated into an integral representation of the strain energy function for modeling tissue behavior. Alternatively, non-integral (often invariant-based) strain energy functions have been developed in which the collagen network structure is approximated using a discrete set of fiber classes. The advantage of such an approach is increased computational efficiency since the values of the strain energy and its derivatives (e.g. stress) can be evaluated without numerical integration. However, because of the structural simplifications such models are presumably unable to predict mechanical data as accurately as the models which incorporate a continuous orientation distribution function. In this work the ability of discrete versus continuous fiber models to capture the non-linear anisotropic response of soft tissue is critically analyzed. Both unimodal and bimodal fiber distributions are considered. A general formulation has been developed in terms of an arbitrary fiber strain energy function, such that the analysis can be performed for any suitable fiber material model. For tissue structures in which a discrete representation is suitable, techniques are presented for establishing the range of loading conditions in which model accuracy is not significantly compromised, thus justifying the use of an invariant-based modeling approach.
机译:软组织的非线性各向异性机械响应在很大程度上取决于基础胶原网络的结构。根据局部定义的纤维取向分布函数,已经成功地对各种组织类型的胶原蛋白结构进行了量化。从结构数据得出的连续分布函数可以直接合并到应变能函数的积分表示中,以对组织行为进行建模。可替代地,已经开发了非积分的(通常基于不变的)应变能函数,其中使用一组离散的纤维类别来近似胶原网络结构。这种方法的优点是可以提高计算效率,因为可以在不进行数值积分的情况下评估应变能及其导数(例如应力)的值。但是,由于结构上的简化,这种模型可能无法像结合了连续取向分布函数的模型那样准确地预测机械数据。在这项工作中,严格分析了离散纤维模型与连续纤维模型捕获软组织的非线性各向异性响应的能力。同时考虑了单峰和双峰纤维分布。已经针对任意的纤维应变能函数开发了一般的公式,从而可以对任何合适的纤维材料模型进行分析。对于其中离散表示是合适的组织结构,提出了用于建立载荷条件范围的技术,在该条件下,模型精度不会受到很大影响,因此证明了使用基于不变性的建模方法是合理的。

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