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Plasma microcirculation in alveolar capillaries: Effect of parachute-shaped red cells on gas exchange

机译:肺泡毛细血管中的血浆微循环:降落伞形红细胞对气体交换的影响

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The effects of plasma microcirculation speed and red blood cell (RBC) shape on CO exchange in alveolar capillaries is numerically investigated. In this study, blood is modeled as an inhomogeneous, two-constituent substance, with one of the constituents being the blood plasma, treated as a homogeneous Newtonian fluid, and the other being the RBCs, treated as discrete, suspended particles (i.e., solid bodies) flowing with the plasma. The RBC shape and blood speed effects on the alveolar diffusion process is observed not only by the variations in the iso-lines along the alveolar capillary but also by changes in the lung diffusing capacity. The simulations include varying the capillary blood speed from 1.0 to 10 mm/s and the capillary hematocrit from 3% to 55%. The RBC shape effect is established by comparing results obtained for circular RBCs to results for which the RBCs have a more realistic, parachute shape when flowing with the plasma. Results reveal the parachute-shaped RBCs yield higher lung diffusing capacity compared to the circular ones. Moreover, blood flow can increase the lung diffusing capacity by almost 50% in certain cases, with the effect being more predominant at high blood speed and low hematocrit. Finally, the effect of blood speed for parachute-shaped RBCs is quantified in terms of percentage-increase lung diffusing capacity and presented in a simple predictive equation.
机译:数值研究了血浆微循环速度和红细胞(RBC)形状对肺泡毛细血管中CO交换的影响。在这项研究中,将血液建模为非均质的两成分物质,其中一种成分是血浆,被视为均质的牛顿流体,另一种成分是红细胞,被视为离散的悬浮颗粒(即固体)。体)随等离子流动。 RBC形状和血液速度对肺泡扩散过程的影响不仅通过沿肺泡毛细血管等值线的变化,而且通过肺扩散能力的变化来观察。模拟包括将毛细管血液速度从1.0改变为10 mm / s,将毛细管血细胞比容从3%改变为55%。 RBC形状效果是通过将圆形RBC的结果与等离子流过时RBC具有更逼真的降落伞形状的结果进行比较来建立的。结果表明,与圆形的相比,降落伞状的RBC具有更高的肺扩散能力。而且,在某些情况下,血流可以使肺扩散能力提高近50%,在高血速和低血细胞比容的情况下,这种作用更为明显。最后,降落伞形红细胞的血流速度影响通过肺扩散能力增加百分比来量化,并以简单的预测方程式表示。

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