Yeow Siang Lin, Leo Hwa Liang
Department of Biomedical Engineering, Faculty of Engineering, National University of Singapore, Singapore 117575.
Comput Math Methods Med. 2016;2016:3830123. doi: 10.1155/2016/3830123. Epub 2016 May 9.
This study investigates the effect of a novel flow remodeling stent graft (FRSG) on the hemodynamic characteristics in highly angulated abdominal aortic aneurysm based on computational fluid dynamics (CFD) approach. An idealized aortic aneurysm with varying aortic neck angulations was constructed and CFD simulations were performed on nonstented models and stented models with FRSG. The influence of FRSG intervention on the hemodynamic performance is analyzed and compared in terms of flow patterns, wall shear stress (WSS), and pressure distribution in the aneurysm. The findings showed that aortic neck angulations significantly influence the velocity flow field in nonstented models, with larger angulations shifting the mainstream blood flow towards the center of the aorta. By introducing FRSG treatment into the aneurysm, erratic flow recirculation pattern in the aneurysm sac diminishes while the average velocity magnitude in the aneurysm sac was reduced in the range of 39% to 53%. FRSG intervention protects the aneurysm against the impacts of high velocity concentrated flow and decreases wall shear stress by more than 50%. The simulation results highlighted that FRSG may effectively treat aneurysm with high aortic neck angulations via the mechanism of promoting thrombus formation and subsequently led to the resorption of the aneurysm.
本研究基于计算流体动力学(CFD)方法,探讨一种新型血流重塑支架移植物(FRSG)对高度成角腹主动脉瘤血流动力学特征的影响。构建了具有不同主动脉颈部角度的理想化主动脉瘤,并对无支架模型和使用FRSG的有支架模型进行了CFD模拟。从血流模式、壁面剪应力(WSS)和动脉瘤内压力分布方面分析并比较了FRSG干预对血流动力学性能的影响。研究结果表明,主动脉颈部角度对无支架模型中的速度流场有显著影响,角度越大,主流血流越向主动脉中心偏移。通过将FRSG治疗引入动脉瘤,动脉瘤腔内不稳定的血流再循环模式减少,但动脉瘤腔内平均速度大小降低了39%至53%。FRSG干预可保护动脉瘤免受高速集中血流的冲击,并使壁面剪应力降低超过50%。模拟结果表明,FRSG可能通过促进血栓形成并随后导致动脉瘤吸收的机制,有效治疗高主动脉颈部角度的动脉瘤。