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[一种新型可回收腔静脉滤器的血流动力学分析]

[Hemodynamic analysis of a new retrievable vena cava filter].

作者信息

Chen Siyuan, Feng Haiquan, Li Xiaoqiang, Gu Jianping, Wang Xiaotian, Cao Ping, Wang Yonggang

机构信息

College of Mechanical Engineering, Inner Mongolia University of Technology, Hohhot 010000, P.R.China.

College of Mechanical Engineering, Inner Mongolia University of Technology, Hohhot 010000,

出版信息

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2019 Apr 25;36(2):245-253. doi: 10.7507/1001-5515.201808032.

Abstract

Vena cava filter is a filter device designed to prevent pulmonary embolism caused by thrombus detached from lower limbs and pelvis. A new retrievable vena cava filter was designed in this study. To evaluate hemodynamic performance and thrombus capture efficiency after transplanting vena cava filter, numerical simulation of computational fluid dynamics was used to simulate hemodynamics and compare it with the commercialized Denali and Aegisy filters, and in vitro experimental test was performed to compare the thrombus capture effect. In this paper, the two-phase flow model of computational fluid dynamics software was used to analyze the outlet blood flow velocity, inlet-outlet pressure difference, wall shear stress on the wall of the filter, the area ratio of the high and low wall shear stress area and thrombus capture efficiency when the thrombus diameter was 5 mm, 10 mm, 15 mm and thrombus content was 10%, 20%, 30%, respectively. Meanwhile, the thrombus capture effects of the above three filters were also compared and evaluated by in vitro experimental data. The results showed that the Denali filter has minimal interference to blood flow after implantation, but has the worst capture effect on 5 mm small diameter thrombus; the Aegisy filter has the best effect on the trapping of thrombus with different diameters and concentrations, but the low wall shear stress area ratio is the largest; the new filter designed in this study has a good filtering and capture efficiency on small-diameter thrombus, and the area ratio of low wall shear stress which is prone to thrombosis is small. The low wall shear stress area of the Denali and Aegisy filters is relatively large, and the risk of thrombosis is high. Based on the above results, it is expected that the new vena cava filter designed in this paper can provide a reference for the design and clinical selection of new filters.

摘要

腔静脉滤器是一种用于预防下肢和骨盆脱落血栓导致肺栓塞的过滤装置。本研究设计了一种新型可回收腔静脉滤器。为评估腔静脉滤器植入后的血流动力学性能和血栓捕获效率,采用计算流体动力学数值模拟来模拟血流动力学,并与商业化的Denali和Aegisy滤器进行比较,同时进行体外实验测试以比较血栓捕获效果。本文利用计算流体动力学软件的两相流模型,分别分析了血栓直径为5mm、10mm、15mm且血栓含量分别为10%、20%、30%时的出口血流速度、进出口压差、滤器壁面的壁面剪应力、高低壁面剪应力区域面积比以及血栓捕获效率。同时,通过体外实验数据对上述三种滤器的血栓捕获效果进行了比较和评估。结果表明,Denali滤器植入后对血流的干扰最小,但对5mm小直径血栓的捕获效果最差;Aegisy滤器对不同直径和浓度血栓的捕获效果最佳,但低壁面剪应力区域面积比最大;本研究设计的新型滤器对小直径血栓具有良好的过滤和捕获效率,且易形成血栓的低壁面剪应力区域面积比小。Denali和Aegisy滤器的低壁面剪应力区域相对较大,血栓形成风险高。基于上述结果,期望本文设计的新型腔静脉滤器可为新型滤器的设计和临床选择提供参考。

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