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Viscoelastic Models Describing Stress Relaxation and Creep in Soft Tissues

机译:描述软组织应力松弛和蠕变的粘弹性模型

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The review of our approach to the specific Theological properties modeling of myocardium has been given. We are working on the level of 'fascicule' as a tissue element, which consists of several cardiomyocytes surrounded by a connective tissue shell. Actually, these properties are characteristic of large majority of living soft tissues. In order to describe essentially nonlinear static 'force-deformation' curves and quasi-static hysteresis loops together with non-exponential stress relaxation and creep time courses we suggest a set of 2D graphs with different topology composed of classical linear Hook's springs and Newtonian damps. Each spring and dashpot represents a group of 3D tissue structural elements. The stress response functions of these models are found for the uniaxial step-wise, or pulse (column-like) external stretching. The inverse response functions of the longitudinal displacement for the external stress loading of the pulse shape time dependencies were also found. The values of elastic modules and viscous coefficients are estimated by comparison theoretical curves of relaxation, creep and recovery with the experimental data. The latter are obtained on rather different objects, passive muscle preparations (the stress relaxation response) and endothelium cells (the creep response). It has been stated that the proposed 2D models appear to be quite general to describe nonlinear relaxation and creep properties, which are lacking in the traditionally used uniaxial 1D models.
机译:已经对我们对心肌的特定神学特性建模的方法进行了综述。我们正在研究“ fascicule”作为组织元素的水平,它由被结缔组织壳包围的数个心肌细胞组成。实际上,这些特性是绝大多数活着的软组织的特征。为了描述基本非线性的静态“力-变形”曲线和准静态磁滞回线以及非指数应力松弛和蠕变时间过程,我们建议使用由经典线性Hook弹簧和牛顿阻尼组成的一组具有不同拓扑的2D图。每个弹簧和减震器代表一组3D组织结构元素。这些模型的应力响应函数适用于单轴逐步拉伸或脉冲(类似柱)的外部拉伸。还发现了纵向位移对脉冲形状时间相关性的外部应力载荷的逆响应函数。通过将松弛,蠕变和回复的理论曲线与实验数据进行比较,可以估算出弹性模量和粘性系数。后者是在完全不同的对象,被动肌肉准备(应力松弛响应)和内皮细胞(蠕变响应)上获得的。已经指出,提出的2D模型似乎非常笼统地描述了非线性松弛和蠕变特性,这在传统上使用的单轴1D模型中是缺乏的。

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