首页> 外文期刊>AJNR. American journal of neuroradiology >Wall shear stress distribution inside growing cerebral aneurysm.
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Wall shear stress distribution inside growing cerebral aneurysm.

机译:增长的脑动脉瘤内的壁切应力分布。

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BACKGROUND AND PURPOSE: Hemodynamic stimulation has been suggested to affect the growth of cerebral aneurysms. The present study examined the effects of intra-aneurysmal hemodynamics on aneurysm growth. MATERIALS AND METHODS: Velocity profiles were measured for 2 cases of AcomA aneurysms. Realistically shaped models of these aneurysms were constructed, based on CT angiograms. Flow fields and WSS in the models were measured by using particle image velocimetry and LDV. In 1 case, hemodynamic changes were observed in 4 stages of growth over a 27-month period, whereas no development was observed in the other case. RESULTS: The growing model had a smaller and more stagnant recirculation area than that in the nongrowth model. The WSS was markedly reduced in the enlarging region in the growing models, whereas extremely low WSS was not found in the nongrowth model. In addition, a higher WSSG was consistently observed adjacent to the enlarging region during aneurysm growth. CONCLUSIONS: The results indicated that the flow structure of recirculation itself does not necessarily lead to high likelihood of cerebral aneurysm. However, WSSG and WSS were distinctly different between the 2 cases. Higher WSSG was found surrounding the growing region, and extremely low WSS was found at the growing region of the growing cerebral aneurysm.
机译:背景与目的:血液动力学刺激已被建议影响脑动脉瘤的生长。本研究检查了动脉瘤内血流动力学对动脉瘤生长的影响。材料与方法:测量2例AcomA动脉瘤的速度分布。根据CT血管造影照片,构建了逼真的形状的这些动脉瘤模型。模型中的流场和WSS通过使用颗粒图像测速法和LDV测量。在1例中,在27个月的4个生长阶段中观察到了血流动力学变化,而在另一例中,则没有观察到发育。结果:与非生长模型相比,生长模型具有更小,更停滞的再循环面积。在增长模型中,WSS在扩大区域显着降低,而在非增长模型中,未发现极低的WSS。此外,在动脉瘤生长期间,在扩大区域附近始终观察到较高的WSSG。结论:结果表明,循环本身的流动结构并不一定会导致脑动脉瘤的高可能性。但是,这两个案例的WSSG和WSS明显不同。在生长区域周围发现较高的WSSG,在生长的脑动脉瘤的生长区域发现极低的WSSS。

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