Chatelin Robin, Poncet Philippe
Université de Lyon, ENI Saint-Étienne, LTDS, UMR 5513 CNRS, 58 rue Jean Parot, 42023 Saint-Etienne Cedex 2, France.
Univ. Pau & Pays Adour, LMAP, IPRA, UMR 5142 CNRS, avenue de l׳Université, BP 1155, F-64013 Pau, France.
J Biomech. 2016 Jun 14;49(9):1772-1780. doi: 10.1016/j.jbiomech.2016.04.009. Epub 2016 Apr 13.
Mucociliary clearance is the natural flow of the mucus which covers and protects the lung from the outer world. Pathologies, like cystic fibrosis, highly change the biological parameters of the mucus flow leading to stagnation situations and pathogens proliferation. As the lung exhibits a complex dyadic structure, in-vivo experimental study of mucociliary clearance is almost impossible and numerical simulations can bring important knowledge about this biological flow. This paper brings a detailed study of the biological parameters influence on the mucociliary clearance, in particular for pathological situations such as cystic fibrosis. Using recent suitable numerical methods, a non-homogeneous mucus flow (including non-linearities) can be simulated efficiently in 3D, allowing the identification of the meaningful parameters involved in this biological flow. Among these parameters, it is shown that the mucus viscosity, the stiffness transition between pericilliary fluid and mucus, the pericilliary fluid height as well as both cilia length and beating frequency have a great influence on the mucociliary transport.
黏液纤毛清除是覆盖并保护肺部免受外界侵害的黏液的自然流动。诸如囊性纤维化等病症会极大地改变黏液流动的生物学参数,导致黏液停滞和病原体增殖。由于肺部呈现出复杂的二元结构,对黏液纤毛清除进行体内实验研究几乎是不可能的,而数值模拟可以带来有关这种生物流动的重要知识。本文详细研究了生物学参数对黏液纤毛清除的影响,特别是针对诸如囊性纤维化等病理情况。使用最近适用的数值方法,可以在三维空间中高效模拟非均匀黏液流动(包括非线性),从而确定这种生物流动中涉及的有意义的参数。在这些参数中,研究表明黏液黏度、纤毛周围液体与黏液之间的刚度转变、纤毛周围液体高度以及纤毛长度和摆动频率对黏液纤毛运输都有很大影响。