Li Mingrui, Wang Jingying, Huang Wen, Zhou Yue, Song Xue
School of Energy and Power Engineering, Shandong University, Jinan, China.
The First Affiliated Hospital of Chongqing Medical University, Chongqing, China.
Front Bioeng Biotechnol. 2022 Oct 10;10:1034120. doi: 10.3389/fbioe.2022.1034120. eCollection 2022.
Inferior vena cava (IVC) filters are used to prevent pulmonary embolism in patients with deep vein thrombosis for whom anticoagulation is unresponsive. The head is a necessary structure for an Inferior vena cava filter (IVCF) in clinic use. At present, there are various head configurations for IVCFs. However, the effect of head pattern on the hemodynamics of IVCF is still a matter of unclear. In this study, computational fluid dynamics is used to simulate non-Newtonian blood flows around four IVCFs with different heads inside an IVC model, in which the Denali filter with a solid and hooked head is employed as a prototype, and three virtual variants are reconstructed either with a no-hook head or with a through-hole head for comparison. The simulation results show that the through-hole head can effectively avoid the recirculation region and weaken the blood flow stasis closely downstream the IVCF head. The shape change of the filter head has no significant effect on the blood flow acceleration inside the IVCF cone as well as little influence on the wall shear stress (WSS) distribution on the filter wire surface and IVC wall. The structure pattern of filter head greatly affects the flow resistance of its own. However, the flow drag of filter head only occupies a small proportion of the total resistance of IVCF. Therefore, to reduce the flow resistance of an IVCF should optimize its whole structure.
下腔静脉(IVC)滤器用于预防深静脉血栓形成且对抗凝治疗无反应的患者发生肺栓塞。头部是临床使用的下腔静脉滤器(IVCF)的必要结构。目前,IVCF有多种头部构型。然而,头部样式对IVCF血液动力学的影响仍不明确。在本研究中,采用计算流体动力学方法,在IVC模型中模拟四种不同头部的IVCF周围的非牛顿血流,其中以具有实心钩状头部的Denali滤器为原型,重建了三种无钩头部或通孔头部的虚拟变体进行比较。模拟结果表明,通孔头部可有效避免回流区域,并减弱IVCF头部紧邻下游的血流淤滞。滤器头部的形状变化对IVCF锥体内的血流加速没有显著影响,对滤器丝表面和IVC壁上的壁面剪切应力(WSS)分布影响也很小。滤器头部的结构样式对其自身的流动阻力有很大影响。然而,滤器头部的流动阻力仅占IVCF总阻力的一小部分。因此,要降低IVCF的流动阻力,应优化其整体结构。