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Emergent Behavior in Lung Structure and Function: Lung tissue mechanics as an emergent phenomenon

机译:肺部结构和功能中的紧急行为:肺组织力学作为一种新兴现象

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摘要

The mechanical properties of lung parenchymal tissue are both elastic and dissipative, as well as being highly nonlinear. These properties cannot be fully understood, however, in terms of the individual constituents of the tissue. Rather, the mechanical behavior of lung tissue emerges as a macroscopic phenomenon from the interactions of its microscopic components in a way that is neither intuitive nor easily understood. In this review, we first consider the quasi-static mechanical behavior of lung tissue and discuss computational models that show how smooth nonlinear stress-strain behavior can arise through a percolation-like process in which the sequential recruitment of collagen fibers with increasing strain causes them to progressively take over the load-bearing role from elastin. We also show how the concept of percolation can be used to link the pathologic progression of parenchymal disease at the micro scale to physiological symptoms at the macro scale. We then examine the dynamic mechanical behavior of lung tissue, which invokes the notion of tissue resistance. Although usually modeled phenomenologically in terms of collections of springs and dashpots, lung tissue viscoelasticity again can be seen to reflect various types of complex dynamic interactions at the molecular level. Finally, we discuss the inevitability of why lung tissue mechanics need to be complex.
机译:肺实质组织的机械特性既具有弹性又具有耗散性,并且是高度非线性的。但是,就组织的各个组成而言,这些特性尚不能完全理解。而是,肺组织的机械行为以微观现象从宏观成分的相互作用中显现出来,这种现象既不直观也不容易理解。在这篇综述中,我们首先考虑了肺组织的准静态力学行为,并讨论了计算模型,该模型显示了如何通过类似渗流的过程出现平滑的非线性应力-应变行为,在该过程中,随着应变的增加胶原纤维的顺序募集导致它们逐步接管弹性蛋白的承重角色。我们还展示了如何使用渗滤概念将微观范围的实质疾病的病理进展与宏观范围的生理症状联系起来。然后,我们检查了肺组织的动态力学行为,该行为引起了组织阻力的概念。尽管通常是根据弹簧和减震器的集合在现象学上进行建模,但可以再次看到肺组织粘弹性在分子水平上反映了各种类型的复杂动态相互作用。最后,我们讨论了为什么肺组织力学需要变得复杂的必然性。

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