Huang Huicheng, Zhang Bin, Zhong Jun, Han Guangting, Zhang Jiawei, Zhou Hao, Mao Tao, Liu Yanhui
College of Textiles and Clothing, State Key Laboratory of Bio-Fibers and Eco-Textiles, Qingdao University, Qingdao, Shandong, 266000, China.
LONG RUN TEXTILECO.,LTD, Zaozhuang, Shandong, 277110, China.
Med Eng Phys. 2023 Mar;113:103966. doi: 10.1016/j.medengphy.2023.103966. Epub 2023 Mar 6.
The performance and effects of 12 different structures of stents in the bile duct were compared and used the finite element method. Numerical models of the 12 kinds of fluid-structure interaction(FSI) coupling systems were established to investigate the relationship between three aspects (velocity distribution of bile, wall shear stress (WSS) distribution of bile, and Von Mises Stress(VMS) distribution on the stent and bile duct) and the structural parameters of the stent (monofilament diameter and the number of braiding heads). After calculating and analyzing the simulation results yielding distributions of velocity, WWS, and VMS and regions of bile duct susceptibility to stenosis, they were consistent with previous findings on the locations of restenosis occurring after stent removal, indicating that the simulation results could provide a useful reference for studying biliary stents. The results of the simulations showed that (i) eddy currents were prone to occur at the stent ends regions; (ii) the WSS distribution of the bile fluid in contact with the stent and bile duct related to the stent structure; (iii) the high VMS on the stent and bile duct was prone to occur at the stent ends. The simulation results of 12 FSI coupling systems were studied and two superior stent model structures were obtained by comprehensive evaluation.
采用有限元方法比较了12种不同结构胆管支架的性能和效果。建立了12种流固耦合(FSI)系统的数值模型,以研究胆汁速度分布、胆汁壁面剪应力(WSS)分布以及支架和胆管上的von Mises应力(VMS)分布这三个方面与支架结构参数(单丝直径和编织头数量)之间的关系。通过计算和分析模拟结果得出速度、WWS和VMS的分布以及胆管易狭窄区域,这些结果与先前关于支架取出后再狭窄发生位置的研究结果一致,表明模拟结果可为研究胆道支架提供有用的参考。模拟结果表明:(i)涡流容易在支架端部区域出现;(ii)与支架结构相关的、与支架和胆管接触的胆汁流体的WSS分布;(iii)支架和胆管上的高VMS容易出现在支架端部。对12种FSI耦合系统的模拟结果进行了研究,并通过综合评估获得了两种 superior 支架模型结构。 (注:“superior”此处可能有误,结合语境推测可能是“更优的”之类含义,但按要求保留原文未修改)