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首页> 外文期刊>Modelling and simulation in engineering >Hemodynamic Effect of Unequal Anterior Cerebral Artery Flow Rates on the Anterior Communicating Artery Bifurcation: A Computational Fluid Dynamics Study
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Hemodynamic Effect of Unequal Anterior Cerebral Artery Flow Rates on the Anterior Communicating Artery Bifurcation: A Computational Fluid Dynamics Study

机译:前脑动脉流速不相等对前交通动脉分叉的血流动力学影响:计算流体动力学研究

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Computational fluid dynamics techniques were used to investigate the hemodynamic effectof unequal anterior cerebral artery flow rates on the anterior cerebral and anterior communicatingartery (ACA-ACOM) bifurcation. Hemodynamics have long been implicated as a majorfactor in cerebrovascular disease. Using an idealized 2D symmetric model of the ACA-ACOMgeometry, the flow field and wall shear stress (WSS) at the bifurcation regions are assessedfor pulsatile inflows with left to right flow ratios of 1:1, 2:1, 3:1, and 4:1. Unequal flow ratesthrough the ACA parent arteries result in bifurcation of the higher flow parent stream and ashifting of the impingement points along the A2-ACOM adjoining wall toward the contralateral ACA. Cross-flow through the ACOM is generally unstable and results in increased WSSat the impingement region from the higher flow parent artery and a double amplitude peakin the WSS at the contralateral bifurcation region from local recirculation effects. These resultssuggest that asymmetry in ACA flow rates result in increased hemodynamic stresses at the ACA-ACOM bifurcation regions and suggest a possible factor for vessel weakening andaneurysm formation.
机译:使用计算流体动力学技术研究不平等的前脑动脉流速对前脑和前交通动脉(ACA-ACOM)分叉的血液动力学影响。长期以来,一直认为血流动力学是脑血管疾病的主要因素。使用ACA-ACOMgeometry的理想2D对称模型,评估分叉区域的流场和壁切应力(WSS),以左右比为1:1、2:1、3:1和1的脉动流量进行评估。 4:1。通过ACA母动脉的流速不相等会导致较高流量的母流分叉,并且撞击点会沿着A2-ACOM邻接壁向对侧ACA转移。通过ACOM的错流通常是不稳定的,并且由于局部再循环的影响,会导致来自较高流量父动脉的撞击区域的WSS增大,以及对侧分叉区域的WSS的双振幅峰。这些结果表明,ACA流量的不对称会导致ACA-ACOM分叉区域的血流动力学应力增加,并提示血管衰弱和动脉瘤形成的可能因素。

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