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基于流固耦合的研究:探讨生理因素对支架置入和非支架置入胸主动脉瘤行为的影响。

Fluid-structure interaction based study on the physiological factors affecting the behaviors of stented and non-stented thoracic aortic aneurysms.

机构信息

Biomechanical Research Laboratory, College of Mechanical Engineering and Applied Electronics Technology, Beijing University of Technology, No.100 Pingleyuan, Chaoyang District, Beijing, PR China.

出版信息

J Biomech. 2011 Aug 11;44(12):2177-84. doi: 10.1016/j.jbiomech.2011.06.020. Epub 2011 Jun 30.

Abstract

Endovascular aneurysm repair (EVAR) is considered as a promising alternative technique for the treatment of aortic aneurysm. However, complications often occur after EVAR. In this paper, the influence of the physiological factors on the biomechanical behaviors of stented and non-stented thoracic aortic aneurysm (TAA) were presented. Representative TAA models with different intraluminal thrombus (ILT) volume before and after stent-graft (SG) implantation were built. Fluid-structure interaction effect was taken into account. The relative sliding between the SG wall and the aortic wall was allowed. Results showed that the cardiac cycle and ILT volume should be given much more consideration than previously thought in future investigations on TAA compliance. The time-averaged longitudinal displacement of SG necks were not uniformly distributed along circumferential direction of the aortic wall. Drag force increased with the increase of the cardiac cycle and decreased with the decrease of ILT volume. Computational results of TAA wall stress, sac and lumen pressure indicated that patient with faster heart rate might be at great risk of aneurysm rupture. The stress absorption effect of the SG was influenced by both ILT and cardiac cycle, which was also found to have strong impact on flow pattern. We believe that this study will bring new insights into further researches on the relevant issues and provide mechanics-based implications for clinical management of EVAR for TAA patient.

摘要

血管内动脉瘤修复术(EVAR)被认为是治疗主动脉瘤的一种有前途的替代技术。然而,EVAR 后常发生并发症。本文介绍了生理因素对支架和非支架胸主动脉瘤(TAA)生物力学行为的影响。建立了支架植入前后不同管腔内血栓(ILT)体积的代表性 TAA 模型。考虑了流固耦合效应。允许 SG 壁和主动脉壁之间发生相对滑动。结果表明,在未来对 TAA 顺应性的研究中,应比以往更关注心动周期和 ILT 体积。SG 颈部的时均纵向位移沿主动脉壁的周向方向不是均匀分布的。阻力随心动周期的增加而增加,随 ILT 体积的减少而减少。TAA 壁应力、囊和管腔压力的计算结果表明,心率较快的患者可能有很大的动脉瘤破裂风险。SG 的应力吸收效果受到 ILT 和心动周期的影响,也发现对流动模式有很强的影响。我们相信,这项研究将为进一步研究相关问题提供新的见解,并为 TAA 患者 EVAR 的临床管理提供力学依据。

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