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Hemodynamic in Aortic Coarctation Using MRI-Based Inflow Condition

机译:主动脉造环中的血流动力学利用MRI基流入条件

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Image-based CFD can support diagnosis, treatment decision and planning. The ability of CFD to calculate pressure drop across the aortic coarctation is the focus of the 2013 STACOM Challenge. The focus of our study was inflow conditions. We compared a MRI-based inlet velocity profile with a swirl and an often used plug velocity profile without swirl. The unsteady flow simulations were performed using the solver FLUENT with consideration of the challenge specifications. For outflows, the constant outflow ratios of the supra-aortic vessels were set. The consideration of a secondary flow (swirl) at the inlet of the ascending aorta significantly affect (reduce) the calculated pressure drop across the aortic coarctation and hence the treatment decision. Furthermore, using MRI-measured flow rates at the ascending and the descending aorta without a proof of data consistency could result in an overestimated pressure drop due to overestimated flow into the supra-aortic vessels.
机译:基于图像的CFD可以支持诊断,治疗决策和规划。 CFD在主动脉造环中计算压力下降的能力是2013卫星攻击的重点。我们研究的重点是流入条件。我们将MRI的入口速度曲线与旋流和经常使用的插头速度曲线进行比较而没有涡旋。使用Solver流放的求解规范进行了不稳定的流量模拟。对于外流,设定了上颌主动脉血管的恒定流出率。在升高的主动脉的入口处考虑逐次流动(漩涡)显着影响(减少)在主动脉造环上的计算压降,从而影响治疗决策。此外,在升序和下降主动脉处使用MRI测量的流速,而没有数据一致性的证据可能导致由于高估流入的升高到同上主动脉血管而导致过高的压降。

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