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Blood flow in venules: A mathematical model including valves inertia

机译:小静脉血流:包括瓣膜惯性的数学模型

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It is well known that venules equipped with valves play a critical role in regulating blood flow. Essentially they are peristaltic pumps that increase the efficiency of venous blood return to the heart, thanks to the presence of valves preventing backflow. Inspired by two recent papers, we have modeled the venule as a vessel with valves placed at its ends and walls animated by radial oscillations that are independent of heart pulsation and respiratory rhythm. Differently from the previous papers, the present model takes into account the valves inertia allowing, for progressive closing/opening stages. The numerical simulations produce a pressure pulse and a velocity profile which agree almost perfectly with the experimental data of Dongaonkar et al., eliminating the discrepancies found in Farina et al., arising from the hypothesis that valves act instantaneously.
机译:众所周知,配备瓣膜的小静脉在调节血流中起关键作用。从本质上讲,它们是蠕动泵,由于存在防止回流的阀门,因此可以提高静脉血液回流到心脏的效率。受最近两篇论文的启发,我们将小静脉建模为一个血管,血管的两端和各个瓣膜都放置在血管壁上,而放射状的振动与心脏的搏动和呼吸节律无关。与以前的论文不同,本模型考虑了阀门的惯性,允许逐步关闭/打开阶段。数值模拟产生的压力脉冲和速度曲线几乎与Dongaonkar等人的实验数据完全吻合,消除了Farina等人中发现的阀门瞬时作用的假设引起的差异。

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