The Use of Contravariant Tensors to Model Anisotropic Soft Tissues

Author:

Basak Arthesh1,Rajagopal Amirtham1,Basappa Umesh2,Hossain Mokarram3

Affiliation:

1. Indian Institute of Technology Hyderabad, Sangareddy, Kandi, Telangana 502285, India

2. National Institute of Technology, Warangal, Telangana 506004, India

3. Zienkiewicz Centre for Computational Engineering, Swansea University, SA2 8EN, Swansea, UK

Abstract

Biological tissues have been shown to behave isotropically at lower strain values, while at higher strains the fibers embedded in the tissue straighten and tend to take up the load. Thus, the anisotropy induced at higher loads can be mathematically modeled by incorporating the strains experienced by the fibers. From histological studies on soft tissues it is evident that for a wide range of tissues the fibers have an oblique mean orientation about the physiological loading directions. Thus, we require a mathematical framework of tensors defined in nonorthogonal basis to capture the direction-dependent response of fibers under high induced loads. In this work, we propose a novel approach to determine the fiber strains with the aid of the contravariant tensors defined in an oblique coordinate system. To determine the fiber strains, we introduce a fourth-order contravariant fiber orientation transformation tensor. The approach helps us successfully in determining the fiber strains, for a family of symmetrically and asymmetrically oriented fibers, with the aid of a single anisotropic invariant. The proposed model was fitted with the experimental data from literature to determine the corresponding material parameters.

Publisher

World Scientific Pub Co Pte Lt

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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