The study of hemodynamic mechanism of a novel endovascular stent on complicated abdominal aortic aneurysms

支架 医学 血流动力学 血流 放射科 腹主动脉瘤 腔内修复术 计算流体力学 流速 动脉瘤 外科 心脏病学 内科学 机械 物理 放松(心理学)
作者
Baotong Li,Yuechao Zhao,Hansong Sun,Shanglin Chen
出处
期刊:Chinese Journal of Thoracic and Cardiovaescular Surgery 卷期号:36 (01): 26-30
标识
DOI:10.3760/cma.j.issn.1001-4497.2020.01.007
摘要

Objective To detect the hemodynamic mechanism of the novel endovascular stent on complicated abdominal aortic aneurysms by Computational Fluid Dynamics(CFD) firstly, and then compare the effect of the novel endovascular stent and the streamliner multilayer flow modulator(SMFM) stent. Methods All medical images were obtained by computed tomography. A semiautomatic segmentation protocol within Mimics(v17.0; Materialise, Leuven, Belgium) was used to extract the threedimensional aortic aneurysms. The stents was generated numerically and fitted along the aortic aneurysms. The lumen volume represented the fluid domain that was discretised in smaller volumes, which defined a mesh within the ICEM software(Ansys ICEM CFD v15.0). Hemodynamic analysis was performed with software Fluent 16.0. Results Both kinds of stents can change the pattern of flow distribution. Compared with SMFM, the novel endovascular stent can significantly reduce the flow velocity in aneurysms, the shear force and the pressure on the aneurysms wall.What’s more, the flow velocity of the branch artery was accelerated by the novel endovascular stent. Conclusion The novel endovascular stent can significantly reduce the flow velocity in aneurysms, the shear force and the pressure on the aneurysms wall, and acceleratethe the flow velocity of the branch artery. Key words: Aortic aneurysms; Computational fluid dynamics; Streamliner multilayer flow modulator; Novel endovascular stent

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