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Hemodynamics in stented vertebral artery ostial stenosis based on computational fluid dynamics simulations

机译:基于计算流体动力学模拟的带支架椎动脉狭窄的血流动力学

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Hemodynamic factors may affect the potential occurrence of in-stent restenosis (ISR) after intervention procedure of vertebral artery ostial stenosis (VAOS). The purpose of the present study is to investigate the influence of stent protrusion length in implantation strategy on the local hemodynamics of the VAOS. CTA images of a 58-year-old female patient with posterior circulation transient ischemic attack were used to perform a 3D reconstruction of the vertebral artery. Five models of the vertebral artery before and after the stent implantation were established. Model 1 was without stent implantation, Model 2-5 was with stent protruding into the subclavian artery for 0, 1, 2, 3mm, respectively. Computational fluid dynamics simulations based on finite element analysis were employed to mimic the blood flow in arteries and to assess hemodynamic conditions, particularly the blood flow velocity and wall shear stress (WSS). The WSS and the blood flow velocity at the vertebral artery ostium were reduced by 85.33 and 35.36% respectively after stents implantation. The phenomenon of helical flow disappeared. Hemodynamics comparison showed that stent struts that protruded 1mm into the subclavian artery induced the least decrease in blood speed and WSS. The results suggest that stent implantation can improve the hemodynamics of VAOS, while stent struts that had protruded 1mm into the subclavian artery would result in less thrombogenesis and neointimal hyperplasia and most likely decrease the risk of ISR.
机译:椎动脉狭窄(VAOS)介入手术后,血流动力学因素可能会影响支架内再狭窄(ISR)的潜在发生。本研究的目的是研究植入策略中支架突出长度对VAOS局部血流动力学的影响。一名58岁女性后循环短暂性脑缺血发作的CTA图像用于进行椎动脉的3D重建。建立了支架植入前后的五个椎动脉模型。模型1没有支架植入,模型2-5带有分别伸入锁骨下动脉的0、1、2、3mm支架。采用基于有限元分析的计算流体动力学模拟来模拟动脉中的血流并评估血液动力学状况,尤其是血流速度和壁切应力(WSS)。支架置入后,椎动脉口的WSS和血流速度分别降低了85.33和35.36%。螺旋流现象消失了。血流动力学比较显示,伸入锁骨下动脉1mm的支架撑杆引起的血流速度和WSS下降最小。结果表明,支架植入可以改善VAOS的血流动力学,而伸入锁骨下动脉1mm的支架撑杆将减少血栓形成和新内膜增生,最有可能降低ISR的风险。

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