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首页> 外文期刊>Communications in Numerical Methods in Engineering >A computational fluid dynamics comparison between different outflow graft anastomosis locations of Left Ventricular Assist Device (LVAD) in a patient-specific aortic model
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A computational fluid dynamics comparison between different outflow graft anastomosis locations of Left Ventricular Assist Device (LVAD) in a patient-specific aortic model

机译:在特定于患者的主动脉模型中,左心室辅助装置(LVAD)的不同出口移植物吻合位置之间的计算流体动力学比较

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摘要

Left ventricular assist devices (LVADs) are mechanical supports used in case of heart failure. Little is known as the height of the anastomosis in aorta might influence the hemodynamic. The aim of the study was to evaluate the fluid dynamic behavior due to the outflow graft placement of a continuous flow LVAD in ascending aorta and to identify the insertion site with the best hemodynamic profile. Computational fluid dynamic studies were carried out to analyze 4 different anastomosis locations in a patient-specific aorta 3D model coupled with a lumped parameters model: 1cm (case 1), 2cm (case 2), 3cm (case 3) and 4cm (case 4) above the ST junction. In cases 1 and 2, epiaortic vessels presented a steady flow, while in cases 3 and 4 the flow was whirling. Moreover, maximum velocity occurred before: brachiocephalic trunk (case 1), brachiocephalic and left carotid arteries (case 2), left carotid and left subclavian artery (case 3) and left subclavian vessel and upper wall of aortic arch (case 4). Maximum time averaged wall shear stress (TAWSS) was located in: the ascending aorta (cases 1 and 2), the inferior curvature of the arch (case 3); at the origin of epiaortic vessels (case 4). Furthermore, a flow recirculation (cases 1 and 2), a blood stagnation and chaotic flow (cases 3 and 4) occurred above the aortic valve. The results suggested that the placement of the outflow graft at 2cm above the ST junction gave the most favorable hemodynamic profile. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:左心室辅助设备(LVAD)是心力衰竭时使用的机械支撑。鲜为人知的是,主动脉内吻合口的高度可能会影响血液动力学。该研究的目的是评估由于升主动脉中连续流动LVAD的流出移植物放置而引起的流体动力学行为,并确定具有最佳血液动力学特征的插入部位。进行了计算流体动力学研究,以分析患者特定主动脉3D模型中的4个不同的吻合位置,并结合集总参数模型:1cm(案例1),2cm(案例2),3cm(案例3)和4cm(案例4) )在ST结上方。在案例1和案例2中,epi动脉血管呈现出稳定的血流,而案例3和案例4中,气流在回旋。此外,最大速度发生在以下情况:头臂干(案例1),头臂和左颈动脉(案例2),左颈和左锁骨下动脉(案例3)以及左锁骨下血管和主动脉弓上壁(案例4)。最大时间平均壁切应力(TAWSS)位于:升主动脉(案例1和2),弓的下曲率(案例3);在epi动脉的起源处(案例4)。此外,在主动脉瓣上方发生了血流再循环(情况1和2),血液停滞和混乱流动(情况3和4)。结果表明,将流出物放置在ST接头上方2cm处可提供最有利的血液动力学特征。版权所有(c)2015 John Wiley&Sons,Ltd.

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