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Hemodynamic Simulation for Surgical Treatment of Congenital Heart Disease

机译:先天性心脏病外科治疗的血流动力学模拟

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Numerical analysis of cardiovascular flow is one of several methods of use for the quantitative evaluation of patient-specific treatments. However, due to the complexity of vascular geometry and flow conditions, the cardiovascular flow simulation continues to be a challenging project. As the flow at the peak of systolic heart beat displayed full turbulence, the congenital heart treatments, Norwood and TCPC procedure, were investigated through the use of computational hemodynamic technology, in the present study. On the other hand, at diastolic period, the flow fell to an almost sedentary state. This indicated that the cardiovascular flow experienced a strange transition of flow from systolic peak to diastole. Thus, in order to accurately simulate this transitional flow, a very small time step was applied in the k -ε turbulent model calculation. Energy losses (EL), local pressure and wall shear stress were analyzed to estimate the result of clinical treatments. It was found that the value of EL, including the influence of respiration, was 1.5 times higher than the value of EL, disregarding respiratory influences. These results indicated that the hemodynamic outcomes of TCPC treatment are noticeably influenced by respiration. The effect of respiration plays an important role in estimating the results of TCPC treatment and thus should be included as one of the important conditions of computational hemodynamic analysis.
机译:心血管流的数值分析是用于定量评估患者特异性治疗的几种方法之一。然而,由于血管几何形状和流动条件的复杂性,心血管流动模拟仍然是一个具有挑战性的项目。随着收缩心脏峰值峰值的流动显示出全湍流,通过使用计算血液动力学技术来研究先天性心脏处理,诺伍德和TCPC程序。另一方面,在舒张期间,流量落入了几乎久坐的状态。这表明心血管流动经历了从收缩峰到舒张的流动的奇怪转变。因此,为了准确地模拟这种过渡流程,在K-E湍流模型计算中应用了非常小的时间步骤。分析了能量损失(EL),局部压力和壁剪切应力以估计临床治疗的结果。发现EL的价值,包括呼吸的影响,比EL的值高1.5倍,忽略呼吸道影响。这些结果表明,TCPC治疗的血流动力学结果明显受呼吸的影响。呼吸的影响在估计TCPC治疗的结果方面发挥着重要作用,因此应作为计算血流动力学分析的重要条件之一。

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