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曲率对肺动脉模型中流体流场的影响:流动可视化研究。

The effects of curvature on fluid flow fields in pulmonary artery models: flow visualization studies.

作者信息

Lynch P G, Saylor A, Ha B, Lucas C, Henry G W, Ferreiro J I, Yoganathan A P

机构信息

Cardiovascular Fluid Dynamics Laboratory, School of Chemical Engineering, Georgia Institute of Technology, Atlanta 30332.

出版信息

J Biomech Eng. 1993 Feb;115(1):97-103. doi: 10.1115/1.2895476.

Abstract

In vitro pulsatile flow visualization studies were conducted to assess the effects of varying radii of curvature of the right ventricular outflow tract (RVOT) and main pulmonary artery (MPA) on the flow fields in the main, right, and left pulmonary arteries of a one month lamb pulmonary artery model. Three glass flow-through models were studied; one with no curvature, one with the correct anatomic curvature, and one with an overaccentuated curvature on the RVOT and MPA. All other geometric parameters were held constant. Pulsatile flow visualization studies were conducted at nine flow conditions; heart rates of 70, 100, and 140 bpm, and cardiac outputs of 1.5, 2.5 and 3.5 l/min with corresponding mean pulmonary pressures of 10, 20, and 30 mmHg. Changes were observed in the pulmonary flow fields as the curvature of the outflow tract, heart rate and mean pulmonary pressure were varied. An increase in vessel curvature led to an increase in the overall radial nature of the flow field as well as flow separation regions which formed faster, originated further downstream, and occupied more of the vessel area. At higher heart rates, the maximum size of the separation regions decreased, while flow separation regions appeared earlier in the cardiac cycle and grew more quickly. Heart rate also affected the initiation of flow reversal; flow reversal occurred later in the cardiac cycle at lower heart rates. Both heart rate and mean pulmonary pressure influenced the stability of the pulmonary flow field and the appearance of coherent structures. In addition, an increase in mean pulmonary pressure increased the magnitude of reverse flow.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

进行了体外搏动血流可视化研究,以评估一个月大羔羊肺动脉模型中右心室流出道(RVOT)和主肺动脉(MPA)不同曲率半径对主肺动脉、右肺动脉和左肺动脉血流场的影响。研究了三个玻璃流通模型;一个没有曲率,一个具有正确的解剖曲率,一个在RVOT和MPA上具有过度突出的曲率。所有其他几何参数保持不变。在九种血流条件下进行了搏动血流可视化研究;心率分别为70、100和140次/分钟,心输出量分别为1.5、2.5和3.5升/分钟,相应的平均肺动脉压分别为10、20和30毫米汞柱。随着流出道曲率、心率和平均肺动脉压的变化,观察到肺血流场的变化。血管曲率增加导致血流场的整体径向性质增加,以及流动分离区域增加,这些区域形成得更快,起源于更远的下游,并且占据更多的血管区域。在较高心率下,分离区域的最大尺寸减小,而流动分离区域在心动周期中出现得更早且增长更快。心率也影响血流逆转的起始;在较低心率下,血流逆转在心动周期中出现得更晚。心率和平均肺动脉压都影响肺血流场的稳定性和相干结构的出现。此外,平均肺动脉压的增加会增加逆流的幅度。(摘要截断于250字)

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