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内稳态稳定吗?形态弹性中的动力稳定性。

Are Homeostatic States Stable? Dynamical Stability in Morphoelasticity.

机构信息

School of Mathematics, University of Manchester, Oxford Road, Manchester, M13 9PL, UK.

Mathematical Institute, University of Oxford, Andrew Wiles Building, Woodstock Road, Oxford, OX2 6GG, UK.

出版信息

Bull Math Biol. 2019 Aug;81(8):3219-3244. doi: 10.1007/s11538-018-0502-7. Epub 2018 Sep 21.

Abstract

Biological growth is often driven by mechanical cues, such as changes in external pressure or tensile loading. Moreover, it is well known that many living tissues actively maintain a preferred level of mechanical internal stress, called the mechanical homeostasis. The tissue-level feedback mechanism by which changes in the local mechanical stresses affect growth is called a growth law within the theory of morphoelasticity, a theory for understanding the coupling between mechanics and geometry in growing and evolving biological materials. This coupling between growth and mechanics occurs naturally in macroscopic tubular structures, which are common in biology (e.g., arteries, plant stems, airways). We study a continuous tubular system with spatially heterogeneous residual stress via a novel discretization approach which allows us to obtain precise results about the stability of equilibrium states of the homeostasis-driven growing dynamical system. This method allows us to show explicitly that the stability of the homeostatic state depends nontrivially on the anisotropy of the growth response. The key role of anisotropy may provide a foundation for experimental testing of homeostasis-driven growth laws.

摘要

生物生长通常受到机械线索的驱动,例如外部压力或拉伸加载的变化。此外,众所周知,许多活组织积极维持着机械内部应力的首选水平,称为机械内稳态。在形态弹性力学理论中,有一种理论用于理解生长和演化生物材料中力学和几何的耦合,即组织水平反馈机制,它描述了局部机械应力变化如何影响生长的生长规律。这种生长与力学之间的耦合在宏观管状结构中自然发生,这些结构在生物学中很常见(例如,动脉、植物茎、气道)。我们通过一种新颖的离散化方法研究了具有空间不均匀残余应力的连续管状系统,该方法允许我们获得关于内稳态驱动生长动力系统平衡状态稳定性的精确结果。该方法使我们能够明确表明,内稳态的稳定性与生长响应的各向异性有不可忽略的关系。各向异性的关键作用可能为实验测试内稳态驱动的生长规律提供基础。

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