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CFD Simulation of Hemodynamics in Sequential and Individual Coronary Bypass Grafts Based on Multislice CT Scan Datasets

机译:基于多层CT扫描数据集的顺序和单独冠状动脉旁路移植物中血流动力学的CFD仿真

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There is still controversy over the differences in the patency rates of the sequential and individual coronary artery bypass grafting (CABG) techniques. The purpose of this paper was to non-invasively evaluate hemodynamic parameters using complete 3D computational fluid dynamics (CFD) simulations of the sequential and the individual methods based on the patient-specific data extracted from computed tomography (CT) angiography. For CFD analysis, the geometric model of coronary arteries was reconstructed using an ECG-gated 64-detector row CT. Modeling the sequential and individual bypass grafting, this study simulates the flow from the aorta to the occluded posterior descending artery (PDA) and the posterior left ventricle (PLV) vessel with six coronary branches based on the physiologically measured inlet flow as the boundary condition. The maximum calculated wall shear stress (WSS) in the sequential and the individual models were estimated to be 35.1 N/m~2 and 36.5 N/m~2, respectively. Compared to the individual bypass method, the sequential graft has shown a higher velocity at the proximal segment and lower spatial wall shear stress gradient (SWSSG) due to the flow splitting caused by the side-to-side anastomosis. Simulated results combined with its surgical benefits including the requirement of shorter vein length and fewer anastomoses advocate the sequential method as a more favorable CABG method.
机译:还有争议旁路移植术(CABG)技术的顺序和个别冠状动脉通畅率的差异。本文的目的是非侵入性评估使用完整的3D计算流体动力学顺序的(CFD)模拟和基于从计算机断层摄影(CT)血管造影术中提取的患者特异性数据的各个方法的血流动力学参数。对于CFD分析,冠状动脉的几何模型使用ECG门控64探测器行的CT被重建。建模顺序和单个旁路移植术,本研究模拟从主动脉到闭塞后降动脉(PDA),并且基于测量的入口流动作为边界条件的生理学6个冠状动脉分支后左心室(PLV)容器的流动。在顺序和单独的模型的最大计算壁剪切应力(WSS)被估计为35.1 N /分别米〜2和36.5牛顿/米〜2,。相比于单独的旁路方法,顺序接枝已经显示出在近端段更高的速度和更低的空间的壁剪切应力梯度(SWSSG)由于由侧面侧吻合的流分离。模拟结果与它的手术的好处,包括更短的长度静脉和更少的吻合的要求组合主张连续方法作为更有利的CABG方法。

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