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A continuum model for pressure-flow relationship in human pulmonary circulation.

机译:人体肺循环压力-流量关系的连续模型。

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A continuum model was introduced to analyze the pressure-flow relationship for steady flow in human pulmonary circulation. The continuum approach was based on the principles of continuum mechanics in conjunction with detailed measurement of vascular geometry, vascular elasticity and blood rheology. The pulmonary arteries and veins were considered as elastic tubes and the "fifth-power law" was used to describe the pressure-flow relationship. For pulmonary capillaries, the sheet-flow represented by the "fourth-power law". In this paper, the pressure-flow relationship for the whole pulmonary circulation and the longitudinal pressure distribution along the streamlines were studied. Our computed data showed general agreement with the experimental data for the normal subjects and the patients with mitral stenosis and chronic bronchitis in the literature. In conclusion, our continuum model can be used to predict the changes of steady flow in human pulmonary circulation.
机译:引入连续模型来分析人肺循环中稳定流动的压力-流量关系。连续体方法是基于连续体力学原理,结合对血管几何形状,血管弹性和血液流变学的详细测量。将肺动脉和静脉视为弹性管,并使用“五次幂定律”描述压力-流量关系。对于肺毛细血管,以“四次幂定律”表示的表流。本文研究了整个肺循环的压力-流量关系和沿流线的纵向压力分布。我们的计算数据与正常受试者以及二尖瓣狭窄和慢性支气管炎患者的实验数据基本一致。总之,我们的连续谱模型可用于预测人肺循环中稳定血流的变化。

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