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NUMERICAL SIMULATION OF PULSE WAVE PROPAGATION IN ARTERIES WITH STRUCTURED-TREE OUTFLOW CONDITIONS

机译:结构树出流条件下脉搏波传播的数值模拟

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摘要

When constructing the one-dimensional systemic artery tree, the Windkessel model based on parameters describing the total resistance and compliance is generally applied as outflow boundary conditions. However, the Windkessel model does not include wave propagation effects, and moreover, it is not obvious how the parameters should be estimated. Hence, the main purpose of this study is to develop an outflow boundary condition based on the underlying physiology of the arterioles, enabling the prediction of blood flow and pressure in the systemic arteries including the arterioles. The obtained numerical results show the fallowings. Firstly, we verified that applying the structured tree model as an outflow boundary condition can reproduce the essential characteristics of the arterial pulse better than applying the Windkessel model. Secondly, by analyzing the pulse wave velocity in aorta, we found a correlation between pulse wave velocity and the degree of arteriosclerosis which correspond to the clinical observation.
机译:在构建一维全身动脉树时,通常将基于描述总阻力和顺应性的参数的Windkessel模型用作流出边界条件。但是,Windkessel模型不包括波传播效应,此外,如何估计参数也并不明显。因此,本研究的主要目的是根据小动脉的潜在生理学发展出流出边界条件,从而能够预测包括小动脉在内的全身动脉的血流量和压力。所得数值结果表明了其不足之处。首先,我们验证了将结构树模型用作流出边界条件比应用Windkessel模型更好地重现了动脉搏动的基本特征。其次,通过分析主动脉中的脉搏波速度,我们发现脉搏波速度与动脉硬化程度之间存在相关性,这与临床观察相符。

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