首页> 外文期刊>Journal of Biomechanics >Blood flow patterns in an anatomically realistic coronary vessel: influence of three different reconstruction methods.
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Blood flow patterns in an anatomically realistic coronary vessel: influence of three different reconstruction methods.

机译:实际解剖冠状动脉中的血流模式:三种不同重建方法的影响。

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Many clinical studies suggest that local blood flow patterns are involved in the location and development of atherosclerosis. In coronary diseases, this assumption should be corroborated by quantitative information on local hemodynamic parameters such as pressure, velocity or wall shear stress. Nowadays, computational fluid dynamics (CFD) algorithms coupled to realistic 3-D reconstructions of such vessels make these data accessible. Nevertheless, they should be carefully analysed to avoid misinterpretations when the physiological parameters are not all considered. As an example, we propose here to compare the flow patterns calculated in a coronary vessel reconstructed by three different methods. In the three cases, the vessel trajectory respected the physiology. In the simplest reconstruction, the coronary was modelled by a tube of constant diameter while in the most complex one, the cross-sections corresponded to the reality. We showed that local pressures, wall shear rates and velocity profiles were severely affected by the geometrical modifications. In the constant cross-section vessel, the flow resembled to that of Poiseuille in a straight tube. On the contrary, velocity and shear rate exhibited sudden local variations in the more realistic vessels. As an example, velocity could be multiplied by 5 as compared to Poiseuille's flow and area of very low wall shear rates appeared. The results obtained with the most complex model clearly outlined that, in addition to a proper description of the vessel trajectory, the section area changes should be carefully taken into account, confirming assumptions already highlighted before the rise of commercially available and efficient CFD softwares.
机译:许多临床研究表明,局部血流模式与动脉粥样硬化的定位和发展有关。在冠心病中,有关局部血液动力学参数(如压力,速度或壁切应力)的定量信息应证实这一假设。如今,将计算流体动力学(CFD)算法与此类容器的逼真的3-D重建相结合,即可访问这些数据。然而,当没有完全考虑生理参数时,应仔细分析它们,以免造成误解。例如,我们在这里建议比较通过三种不同方法重建的冠状血管中计算出的流动模式。在这三种情况下,血管轨迹均符合生理学。在最简单的重建中,使用恒定直径的管对冠状动脉进行建模,而在最复杂的重建中,横截面与实际情况相对应。我们显示,几何修改严重影响了局部压力,壁面剪切速率和速度曲线。在恒定横截面的容器中,在直管中的流动类似于Poiseuille的流动。相反,速度和剪切速率在更实际的容器中表现出突然的局部变化。例如,与泊瓦伊耶的流量相比,速度可以乘以5,并且出现的壁剪切速率非常低的区域。使用最复杂的模型获得的结果清楚地表明,除了正确描述船舶轨迹外,还应仔细考虑截面积的变化,确认在市售高效CFD软件出现之前已经强调的假设。

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