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模型边界条件对特定患者狭窄右冠状动脉血流模式的影响。

Influence of model boundary conditions on blood flow patterns in a patient specific stenotic right coronary artery.

作者信息

Liu Biyue, Zheng Jie, Bach Richard, Tang Dalin

出版信息

Biomed Eng Online. 2015;14 Suppl 1(Suppl 1):S6. doi: 10.1186/1475-925X-14-S1-S6. Epub 2015 Jan 9.

Abstract

BACKGROUND

In literature, the effect of the inflow boundary condition was investigated by examining the impact of the waveform and the shape of the spatial profile of the inlet velocity on the cardiac hemodynamics. However, not much work has been reported on comparing the effect of the different combinations of the inlet/outlet boundary conditions on the quantification of the pressure field and flow distribution patterns in stenotic right coronary arteries.

METHOD

Non-Newtonian models were used to simulate blood flow in a patient-specific stenotic right coronary artery and investigate the influence of different boundary conditions on the phasic variation and the spatial distribution patterns of blood flow. The 3D geometry of a diseased artery segment was reconstructed from a series of IVUS slices. Five different combinations of the inlet and the outlet boundary conditions were tested and compared.

RESULTS

The temporal distribution patterns and the magnitudes of the velocity, the wall shear stress (WSS), the pressure, the pressure drop (PD), and the spatial gradient of wall pressure (WPG) were different when boundary conditions were imposed using different pressure/velocity combinations at inlet/outlet. The maximum velocity magnitude in a cardiac cycle at the center of the inlet from models with imposed inlet pressure conditions was about 29% lower than that from models using fully developed inlet velocity data. Due to the fact that models with imposed pressure conditions led to blunt velocity profile, the maximum wall shear stress at inlet in a cardiac cycle from models with imposed inlet pressure conditions was about 29% higher than that from models with imposed inlet velocity boundary conditions. When the inlet boundary was imposed by a velocity waveform, the models with different outlet boundary conditions resulted in different temporal distribution patterns and magnitudes of the phasic variation of pressure. On the other hand, the type of different boundary conditions imposed at the inlet and the outlet did not have significant effect on the spatial distribution patterns of the PD, the WPG and the WSS on the lumen surface, regarding the locations of the maximum and the minimum of each quantity.

CONCLUSIONS

The observations from this study indicated that the ways how pressure and velocity boundary conditions are imposed in computational models have considerable impact on flow velocity and shear stress predictions. Accuracy of in vivo measurements of blood pressure and velocity is of great importance for reliable model predictions.

摘要

背景

在文献中,通过研究波形和入口速度空间剖面形状对心脏血流动力学的影响,探讨了流入边界条件的作用。然而,关于比较不同进出口边界条件组合对狭窄右冠状动脉压力场量化和血流分布模式的影响,报道的研究并不多。

方法

使用非牛顿模型模拟特定患者狭窄右冠状动脉中的血流,并研究不同边界条件对血流的相位变化和空间分布模式的影响。从一系列血管内超声(IVUS)切片重建病变动脉段的三维几何结构。测试并比较了进出口边界条件的五种不同组合。

结果

当在进出口使用不同的压力/速度组合施加边界条件时,速度、壁面剪切应力(WSS)、压力、压降(PD)和壁面压力空间梯度(WPG)的时间分布模式和大小各不相同。施加入口压力条件的模型在入口中心处心动周期内的最大速度大小比使用充分发展的入口速度数据的模型低约29%。由于施加压力条件的模型导致速度剖面变钝,施加入口压力条件的模型在心动周期内入口处的最大壁面剪切应力比施加入口速度边界条件的模型高约29%。当入口边界由速度波形施加时,不同出口边界条件的模型导致压力相位变化的不同时间分布模式和大小。另一方面,关于每个量的最大值和最小值的位置,在入口和出口施加的不同边界条件类型对管腔表面上的PD、WPG和WSS的空间分布模式没有显著影响。

结论

本研究的观察结果表明,在计算模型中施加压力和速度边界条件的方式对流速和剪切应力预测有相当大的影响。体内血压和速度测量的准确性对于可靠的模型预测非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73c2/4306119/60e8fd1f3a2f/1475-925X-14-S1-S6-1.jpg

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