School of Mathematics, University of Southampton, Southampton, UK.
Bull Math Biol. 2013 Jan;75(1):49-81. doi: 10.1007/s11538-012-9793-2. Epub 2012 Nov 17.
This study investigates the fluid flow through tissues where lymphatic drainage occurs. Lymphatic drainage requires the use of two valve systems, primary and secondary. Primary valves are located in the initial lymphatics. Overlapping endothelial cells around the circumferential lining of lymphatic capillaries are presumed to act as a unidirectional valve system. Secondary valves are located in the lumen of the collecting lymphatics and act as another unidirectional valve system; these are well studied in contrast to primary valves. We propose a model for the drainage of fluid by the lymphatic system that includes the primary valve system. The analysis in this work incorporates the mechanics of the primary lymphatic valves as well as the fluid flow through the interstitium and that through the walls of the blood capillaries. The model predicts a piecewise linear relation between the drainage flux and the pressure difference between the blood and lymphatic capillaries. The model describes a permeable membrane around a blood capillary, an elastic primary lymphatic valve and the interstitium lying between the two.
本研究探讨了淋巴引流过程中组织内的流体流动。淋巴引流需要使用两种瓣膜系统,即初级瓣膜和次级瓣膜。初级瓣膜位于初始淋巴管中。围绕淋巴管毛细血管的圆周衬里的重叠内皮细胞被认为是一种单向瓣膜系统。次级瓣膜位于收集淋巴管的管腔中,作为另一种单向瓣膜系统;与初级瓣膜相比,这些瓣膜系统得到了很好的研究。我们提出了一个包括初级瓣膜系统的淋巴系统引流液模型。这项工作的分析包括了初级淋巴管瓣膜的力学以及间质和血液毛细血管壁内的流体流动。该模型预测了引流通量和血液与淋巴毛细血管之间的压差之间的分段线性关系。该模型描述了围绕血液毛细血管的可渗透膜、弹性初级淋巴瓣膜以及位于两者之间的间质。