Braeu F A, Seitz A, Aydin R C, Cyron C J
Institute for Computational Mechanics, Technical University of Munich, Boltzmannstrasse 15, 85748, Garching, Germany.
Biomech Model Mechanobiol. 2017 Jun;16(3):889-906. doi: 10.1007/s10237-016-0859-1. Epub 2016 Dec 5.
Constrained mixture models for soft tissue growth and remodeling have attracted increasing attention over the last decade. They can capture the effects of the simultaneous presence of multiple constituents that are continuously deposited and degraded at in general different rates, which is important to understand essential features of living soft tissues that cannot be captured by simple kinematic growth models. Recently the novel concept of homogenized constrained mixture models was introduced. It was shown that these models produce results which are very similar (and in certain limit cases even identical) to the ones of constrained mixture models based on multi-network theory. At the same time, the computational cost and complexity of homogenized constrained mixture models are much lower. This paper discusses the theory and implementation of homogenized constrained mixture models for anisotropic volumetric growth and remodeling in three dimensions. Previous constrained mixture models of volumetric growth in three dimensions were limited to the special case of isotropic growth. By numerical examples, comparison with experimental data and a theoretical discussion, we demonstrate that there is some evidence raising doubts whether isotropic growth models are appropriate to represent growth and remodeling of soft tissue in the vasculature. Anisotropic constrained mixture models, as introduced in this paper for the first time, may be required to avoid unphysiological results in simulations of vascular growth and remodeling.
在过去十年中,用于软组织生长和重塑的约束混合模型受到了越来越多的关注。它们可以捕捉多种成分同时存在的影响,这些成分通常以不同的速率持续沉积和降解,这对于理解简单运动学生长模型无法捕捉的活体软组织的基本特征非常重要。最近,引入了均匀化约束混合模型的新概念。结果表明,这些模型产生的结果与基于多网络理论的约束混合模型的结果非常相似(在某些极限情况下甚至相同)。同时,均匀化约束混合模型的计算成本和复杂度要低得多。本文讨论了用于三维各向异性体积生长和重塑的均匀化约束混合模型的理论和实现。先前的三维体积生长约束混合模型仅限于各向同性生长的特殊情况。通过数值示例、与实验数据的比较以及理论讨论,我们证明有一些证据使人怀疑各向同性生长模型是否适合表示脉管系统中软组织的生长和重塑。本文首次引入的各向异性约束混合模型可能是避免血管生长和重塑模拟中出现非生理结果所必需的。