考虑不同血黏度时心脏运动对左冠状动脉流速的影响

F. Forouzandeh, N. Fatouraee
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引用次数: 1

摘要

冠状动脉是心血管系统疾病最脆弱的部位之一。众所周知,由于心脏运动,冠状动脉的曲率在每个心动周期都会发生变化,这可以显著影响冠状动脉的血流动力学。本研究采用实验模型研究了人左冠状动脉运动对其血流速率的影响。并以不同黏度的血液作为工作液进行实验,以了解心脏运动对黏度较高的血液的动脉流速的影响。利用冠状动脉运动模拟器装置将动脉简化成一根直的柔性管,并进行平面内正弦运动,而动脉的横截面不变。在管入口处施加稳态压力梯度,使其在准静态状态下形成接近生理值的层流,而在出口处施加大气压。同时,通过为这些实验设计、优化和制造的喷嘴流量计精确测量了流量的变化。对不同粘度的流体进行了实验,研究了运动和粘度对流速的影响。在所有实验中,得到两组结果:(i)静态管在平均曲率半径(准静态状态)下的流量(ii)在1hz频率下的移动管的流量。结果表明,当工作流体具有与正常血液相似的特性时,与准静态相比,动脉运动可使平均流速增加12%。此外,研究发现,如果血液比正常情况下更粘稠,心脏运动在增加流速方面的作用可以被放大。综上所述,心脏运动可能在左冠状动脉血流速率变化中起重要作用,并强调了进一步研究的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Cardiac Motion on the Flow Rate of the Left Coronary Artery Considering Different Blood Viscosities
Coronary arteries are one of the most vulnerable sites of diseases in the cardiovascular system. It is a known fact that the curvatures of coronary arteries change during every cardiac cycle due to cardiac motions, which can significantly affect their hemodynamics. In this study, effects of human left coronary artery motions on its blood flow rate were investigated using an experimental model. Also, the different blood viscosities were experimented as the working fluid in order to find out the effect of cardiac motion on the flow rate of the artery for more viscous blood. The artery was simplified into a straight flexible tube that experienced an in-plane sinusoidal motion utilizing a coronary artery motion simulator device, while the artery's cross-section did not change. A steady state pressure gradient was applied at the tube inlet, making a laminar flow close to the physiological values in the quasi-static state, while the outlet was at atmospheric pressure. Meanwhile, variations in flow rate were accurately measured by a nozzle flowmeter that was designed, optimized, and fabricated for these experiments. Several experiments were performed on fluids with different viscosities to find out the effects of both motion and viscosity on the flow rate. In all experiments, two sets of results were obtained: (i) the flow rate of the static tube with a mean curvature radius (quasi-static state) (ii) the flow rate of the moving tube at the frequency of 1 Hz. According to the results, artery motions can increase the mean flow rate up to 12% compared with the quasi-static state, when the working fluid has characteristics similar to normal blood. In addition, it was found that the effect of cardiac motion in increasing the flow rate can be amplified if the blood is more viscous than normal. Taken together, the results suggest that the cardiac motion may play an important role in changes of left coronary artery flow rate, and emphasize the need for future investigations.
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