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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Patient-specific 3D hemodynamics modelling of left coronary artery under hyperemic conditions
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Patient-specific 3D hemodynamics modelling of left coronary artery under hyperemic conditions

机译:左冠状动脉患者特异性3D血流动力学建模在大性病下

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摘要

The purpose of this study is to investigate the effect of various degrees of percentage stenosis on hemodynamic parameters during the hyperemic flow condition. 3D patient-specific coronary artery models were generated based on the CT scan data using MIMICS-18. Numerical simulation was performed for normal and stenosed coronary artery models of 70, 80 and 90% AS (area stenosis). Pressure, velocity, wall shear stress and fractional flow reserve (FFR) were measured and compared with the normal coronary artery model during the cardiac cycle. The results show that, as the percentage AS increase, the pressure drop increases as compared with the normal coronary artery model. Considerable elevation of velocity was observed as the percentage AS increases. The results also demonstrate a recirculation zone immediate after the stenosis which could lead to further progression of stenosis in the flow-disturbed area. Highest wall shear stress was observed for 90% AS as compared to other models that could result in the rupture of coronary artery. The FFR of 90% AS is found to be considerably low.
机译:本研究的目的是探讨各种程度狭窄在血液流动条件下对血流动力学参数的影响。基于使用MIMICS-18的CT扫描数据生成3D患者特异性冠状动脉模型。为(面积狭窄)为70,80%和90%的正常和狭窄的冠状动脉模型进行数值模拟。测量压力,速度,壁剪切应力和分数流量储备(FFR),并与心循环期间的正常冠状动脉模型进行比较。结果表明,随着百分比增加,与正常冠状动脉模型相比,压降增加。观察到速度相当大的速度作为增加的百分比。结果还证明了狭窄后立即进行再循环区,这可能导致流动性地区的狭窄进一步进展。与可能导致冠状动脉破裂的其他模型相比,观察到最高壁剪切应力90%。发现90%的FFR相当低。

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