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形状记忆支架移植物对局部主动脉顺应性的影响。

Influence of shape-memory stent grafts on local aortic compliance.

机构信息

Biomedical Engineering, College of Engineering and Informatics, National University of Ireland, Galway, Ireland.

Western Vascular Institute, National University of Ireland Galway, Galway, Ireland.

出版信息

Biomech Model Mechanobiol. 2021 Dec;20(6):2373-2392. doi: 10.1007/s10237-021-01514-9. Epub 2021 Sep 19.

Abstract

The effect of repair techniques on the biomechanics of the aorta is poorly understood, resulting in significant levels of postoperative complications for patients worldwide. This study presents a computational analysis of the influence of Nitinol-based devices on the biomechanical performance of a healthy patient-specific human aorta. Simulations reveal that Nitinol stent-grafts stretch the artery wall so that collagen is stretched to a straightened high-stiffness configuration. The high-compliance regime (HCR) associated with low diastolic lumen pressure is eliminated, and the artery operates in a low-compliance regime (LCR) throughout the entire cardiac cycle. The slope of the lumen pressure-area curve for the LCR post-implantation is almost identical to that of the native vessel during systole. This negligible change from the native LCR slope occurs because the stent-graft increases its diameter from the crimped configuration during deployment so that it reaches a low-stiffness unloading plateau. The effective radial stiffness of the implant along this unloading plateau is negligible compared to the stiffness of the artery wall. Provided the Nitinol device unloads sufficiently during deployment to the unloading plateau, the degree of oversizing has a negligible effect on the pressure-area response of the vessel, as each device exerts approximately the same radial force, the slope of which is negligible compared to the LCR slope of the native artery. We show that 10% oversizing based on the observed diastolic diameter in the mid descending thoracic aorta results in a complete loss of contact between the device and the wall during systole, which could lead to an endoleak and stent migration. 20% oversizing reaches the Dacron enforced area limit (DEAL) during the pulse pressure and results in an effective zero-compliance in the later portion of systole.

摘要

修复技术对主动脉生物力学的影响知之甚少,导致全球范围内的患者术后并发症发生率居高不下。本研究对基于 Nitinol 的装置对健康患者特定人类主动脉生物力学性能的影响进行了计算分析。模拟结果表明,Nitinol 支架移植物会拉伸动脉壁,使胶原拉伸至拉直的高硬度配置。与低舒张腔压相关的高顺应性状态(HCR)被消除,动脉在整个心动周期中处于低顺应性状态(LCR)。植入后 LCR 的腔压-面积曲线的斜率几乎与收缩期天然血管的斜率相同。这种与天然 LCR 斜率几乎相同的微小变化是因为支架移植物在展开过程中从卷曲配置增加其直径,从而达到低硬度卸载平台。与动脉壁的刚度相比,植入物在该卸载平台上的有效径向刚度可以忽略不计。只要 Nitinol 装置在展开过程中充分卸载到卸载平台,那么过度扩张的程度对血管的压力-面积反应几乎没有影响,因为每个装置施加的径向力大致相同,与天然动脉的 LCR 斜率相比,其斜率可以忽略不计。我们表明,基于观察到的降胸主动脉中段的舒张直径,10%的过度扩张会导致支架与壁在收缩期完全失去接触,这可能导致内漏和支架迁移。20%的过度扩张在脉搏压期间达到 Dacron 强制区域极限(DEAL),并导致收缩后期的有效零顺应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f13/8595172/8069ca6195cf/10237_2021_1514_Fig1_HTML.jpg

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