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首页> 外文期刊>Acta Neurochirurgica >Influence of parent vessel dominancy on fluid dynamics of anterior communicating artery aneurysms.
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Influence of parent vessel dominancy on fluid dynamics of anterior communicating artery aneurysms.

机译:亲代血管优势对前交通动脉瘤流体动力学的影响。

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BACKGROUND: Parent vessel plays an important role in aneurysm formation and rupture. The diameter of either the A1 arteries is the peculiar key controlling the flow of the anterior communicating artery (ACOMA) aneurysms (ANs). OBJECTIVE: The purpose is to study the effect of parent vessel dominancy, that is, the diameter of the A1 artery, on the flow characteristics of the ACOMA ANs. METHODS: Numerical simulations for the flow patterns in six artificial models have been studied. Three models are designed with aneurysms and three models without. The two A1s were equal in two models. In the other two models, the nondominant A1 diameters were decreased by 50%. Again, the nondominant A1s were decreased by another 50% in the last two models. Each pair was designed with and without aneurysms in the ACOMA. FINDINGS: The ACOMA shows lower velocity magnitudes and wall shear stresses when the two A1s are equal. However, if one A1 is dominant with a 50% difference from the other A1, there is higher shear stress on the ACOMA itself and in the inflow zone of the aneurysm that increases more with further reduction of the nondominant A1 by another 50%. An area of high corner pressure at the bifurcation of the dominant A1 into the ACOMA and A2 exists and increases in value with the decrease of diameter of the other nondominant A1. CONCLUSION: Aneurysms located in the ACOMA with differences of 50% or more between the two A1s are subjected to more flow stresses.
机译:背景:亲代血管在动脉瘤的形成和破裂中起着重要作用。 A1动脉的直径是控制前交通动脉(ACOMA)动脉瘤(ANs)流量的特殊关键。目的:目的是研究母体血管优势,即A1动脉的直径,对ACOMA ANs血流特性的影响。方法:对六个人工模型中流动模式的数值模拟进行了研究。设计有动脉瘤的三种模型和没有瘤的三种模型。在两个模型中,两个A1相等。在其他两个模型中,非主要的A1直径减小了50%。同样,在过去的两个模型中,非主要的A1又降低了50%。每对均设计为在ACOMA中有无动脉瘤。结果:当两个A1相等时,ACOMA的速度幅度和壁剪应力较小。但是,如果一个A1占优势,与另一个A1的差异为50%,则在ACOMA本身和动脉瘤的流入区中会有较高的切应力,随着非占优势的A1进一步降低50%,切应力将增加更多。存在优势A1进入ACOMA和A2的分叉处的高拐角压力区域,并且该值随另一个非优势A1的直径减小而增加。结论:位于两个两个A1之间相差50%或更多的ACOMA中的动脉瘤承受更大的流动应力。

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