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Gradient-enhanced continuum models of healing in damaged soft tissues

机译:渐变增强的损坏软组织中愈合的连续体型

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摘要

Healing of soft biological tissue is the process of self-recovering or self-repairing the injured or damaged extracellular matrix (ECM). Healing is assumed to be stress-driven, with the objective of returning to a homeostatic stress metrics in the tissue after replacing the damaged ECM with new undamaged one. However, based on the existence of intrinsic length scales in soft tissues, it is thought that computational models of healing should be non-local. In the present study, we introduce for the first time two gradient-enhanced constitutive healing models for soft tissues including non-local variables. The first model combines a continuum damage model with a temporally homogenized growth model, where the growth direction is determined according to local principal stress directions. The second one is based on a gradient-enhanced healing model with continuously recoverable damage variable. Both models are implemented in the finite-element package Abaqus by means of a user subroutine UEL. Three two-dimensional situations simulating the healing process of soft tissues are modeled numerically with both models, and their application for simulation of balloon angioplasty is provided by illustrating the change of damage field and geometry in the media layer throughout the healing process.
机译:软生物组织的愈合是自我恢复或自我修复受损或受损的细胞外基质(ECM)的过程。假设愈合被压力驱动,其目的是在用新的未造成的ECM替换受损的ECM后返回组织中的稳重压力度量。然而,基于软组织中的内在长度尺度的存在,认为愈合的计算模型应该是非局部的。在本研究中,我们首次介绍了两个梯度增强的组成型愈合模型,用于包括非局部变量的软组织。第一模型将连续损伤模型与时间上均匀化的生长模型组合,其中生长方向根据局部主应力方向确定。第二个是基于梯度增强的愈合模型,具有连续可恢复的损伤变量。两种模型通过用户子例程UEL在有限元包ABAQU中实现。模拟软组织的愈合过程的三个二维情况与两种模型进行了模拟,并且它们通过在整个愈合过程中示出介质层中的损伤场和几何形状的变化来提供仿真气囊血管成形术的应用。

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