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Numerical Investigation of Blood Flow in a Sequential Aorto-Coronary Bypass Graft Model

机译:顺序主动脉冠状动脉旁路移植术模型中血流的数值研究

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Sequential grafting technique is adopted when one or more of the coronary arteries are blocked or severely narrowed. The objective of this study was to understand the influence of the anastomosis configuration on the blood flow in the three-dimensional coronary artery bypass graft (CABG) model. The finite volume technique was employed to model the 3-D blood flow pattern to determine the velocity and WSS distributions. This study presents the flow-field distributions of the velocity and WSS at two instances of the cardiac cycle, one during start of ejection (t=0.0 s) and the other during early diastole (t=0.32 s). Our results reveal that maximum wall shear stress was observed at the toe of the end-to side anstomosis. The smooth flow patterns observed in the side-to-side anastomosis region resulted in an almost uniform variation of WSS. The present work indicates that a side-to-side anastomosis would result in a better graft patency than an end-to-side anastomosis
机译:当一个或多个冠状动脉阻塞或严重狭窄时,采用顺序移植技术。这项研究的目的是在三维冠状动脉旁路移植术(CABG)模型中了解吻合结构对血流的影响。采用有限体积技术对3-D血流模式进行建模,以确定速度和WSS分布。这项研究提出了在两种心动周期情况下速度和WSS的流场分布,一种在喷射开始时(t = 0.0 s),另一种在舒张早期(t = 0.32 s)。我们的结果表明,在端到端吻合口的趾部观察到最大的壁切应力。在左右吻合区域观察到的平滑流动模式导致WSS几乎均匀变化。目前的工作表明,与端侧吻合术相比,侧向吻合术可带来更好的移植通畅性

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