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Role of Aortic Geometry on Stroke Propensity based on Simulations of Patient-Specific Models

机译:基于特定于患者的模型的模拟主动脉几何在中风倾向中的作用

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摘要

Stroke is a life threatening event that is expected to more than double over the next 40 years. Atrial fibrillation (AF) has been reported as a strong independent risk factor for stroke. We have previously shown that a hemodynamic perturbation by AF or reduced cardiac output and cycle length may have a significant impact on clot trajectory and thus embolic stroke propensity through the left common carotid artery using an idealized aortic arch model. Here, we show the dependence of flow patterns and hence stroke propensity on geometry of patient-specific aortas. We performed computational fluid dynamics (CFD) simulations to determine the variations of AF-induced stroke propensity over various image-based patient-dependent aorta models. The results demonstrated that curvature pattern of aorta can play a determinant role in AF-induced stroke propensity alteration. Specifically, it was shown that the hemodynamic perturbation by AF considered led to substantial increase in stroke propensity (i.e., 2.5~3.8 fold elevation) for lower curvature angle <90° while the changes in stroke propensity by AF are negligible for higher curvature angle >90°. The present simulations suggest that aortic arch curvature is an important risk factor for embolic stroke which should be tested in future clinical trials.
机译:中风是一种威胁生命的事件,预计在未来40年内将增加一倍以上。心房颤动(AF)被报告为中风的重要独立危险因素。先前我们已经表明,使用理想的主动脉弓模型,AF引起的血流动力学扰动或心输出量和周期长度的减少可能会对血凝块轨迹产生重大影响,从而影响通过左颈总动脉的栓塞性卒中倾向。在这里,我们显示了流动模式的依赖性,因此显示了中风倾向对患者特定主动脉的几何形状的依赖性。我们进行了计算流体动力学(CFD)模拟,以确定在各种基于图像的患者相关主动脉模型上,房颤诱发的中风倾向的变化。结果表明,主动脉曲率模式可以在房颤诱发的卒中倾向改变中起决定性作用。具体而言,研究表明,考虑到AF引起的血流动力学扰动,导致曲率小于90度的卒中倾向显着增加(即升高2.5〜3.8倍),而曲率大于90度时AF引起的卒中倾向的变化可忽略不计。 90°。目前的模拟表明,主动脉弓弯曲是栓塞性中风的重要危险因素,应在以后的临床试验中进行测试。

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