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Numerical and experimental investigations of the flow–pressure relation in multiple sequential stenoses coronary artery

机译:连续多发性狭窄冠状动脉血流压力关系的数值和实验研究

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摘要

Virtual fractional flow reserve (vFFR) has been evaluated as an adjunct to invasive fractional flow reserve (FFR) in the light of its operational and economic benefits. The accuracy of vFFR and the complexity of hyperemic flow simulation are still not clearly understood. This study investigates the flow–pressure relation in an idealised multiple sequential stenoses coronary artery model via numerical and experimental approaches. Pressure drop is linearly correlated with flow rate irrespective of the number of stenosis. Computational fluid dynamics results are in good agreement with the experimental data, demonstrating reasonable accuracy of vFFR. It was also found that the difference between data obtained with steady and pulsatile flows is negligible, indicating the steady flow may be used instead of pulsatile flow conditions in vFFR computation. This study adds to the current understanding of vFFR and may improve its clinical applicability as an adjunct to invasively determined FFR.
机译:考虑到虚拟分数流量储备(vFFR)的运营和经济利益,它已被评估为侵入分数分数流量储备(FFR)的补充。 vFFR的准确性和充血流模拟的复杂性仍不清楚。这项研究通过数值和实验方法研究了理想的多个连续狭窄型冠状动脉模型中的血流压力关系。压降与流量呈线性关系,而与狭窄的数量无关。计算流体动力学结果与实验数据吻合良好,证明了vFFR的合理准确性。还发现在稳态流量和脉动流量下获得的数据之间的差异可以忽略不计,这表明在vFFR计算中可以使用稳态流量代替脉动流量条件。这项研究增加了对vFFR的当前了解,并可能改善其作为有创测定FFR的辅助手段的临床适用性。

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