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The Size of Red Blood Cells Regulates the Extent of Pulmonary Capillary Diameter Effect on Pulmonary Gas Exchange Process

机译:红细胞的大小调节肺毛细血管直径对肺气体交换过程的影响程度

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The efficiency of the pulmonary gas exchange process is of great importance for human body homeostasis. In this paper, effect of two important factors, namely pulmonary capillary diameter and red blood cells (RBCs) surface area, on the efficiency of this process is studied. To this purpose, a previously published model consisting of a 2-D geometry is adopted to simulate the system. Results show that simultaneous increase of the pulmonary capillary diameter and RBC surface area synergistically increases oxygen saturation time of RBCs. Furthermore, we show that the efficiency of the system enhances by increasing RBC surface area and decreasing pulmonary capillary diameter. We identified that the type of influence that pulmonary capillary exerts to the systems efficiency depends on the value of RBC surface area. Results of this study highlight the importance of RBC viable surface area in the process of pulmonary gas exchange.
机译:肺气体交换过程的效率对于人体体内平衡至关重要。本文研究了两个重要因素,即肺毛细血管直径和红细胞(RBCs)表面积对该过程效率的影响。为此,采用了由2-D几何图形组成的先前发布的模型来模拟系统。结果显示,肺毛细血管直径和RBC表面积的同时增加会协同增加RBC的氧饱和时间。此外,我们表明,通过增加RBC表面积和减小肺毛细血管直径,可以提高系统的效率。我们确定,肺毛细血管对系统效率的影响类型取决于RBC表面积的值。这项研究的结果突出了RBC可行表面积在肺气体交换过程中的重要性。

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