Allum Saib Zubeir, Abed Farid, Ghayesh Mergen H, Amabili Marco
Biomedical Engineering Graduate Program, American University of Sharjah, P.O. Box 26666, Sharjah, United Arab Emirates.
Department of Civil Engineering, American University of Sharjah, P.O. Box 26666, Sharjah, United Arab Emirates.
Biomech Model Mechanobiol. 2025 Feb;24(1):77-91. doi: 10.1007/s10237-024-01896-6. Epub 2024 Oct 6.
Self-expandable stents manufactured from nitinol alloys are commonly utilized alongside traditional balloon-expandable stents to provide scaffolding to stenosed arteries. However, a significant limitation hampering stent efficacy is restenosis, triggered by neointimal hyperplasia and resulting in the loss of gain in lumen size, post-intervention. In this study, a nonlinear finite element model was developed to simulate stent crimping and expansion and its interaction with the surrounding vessel in the presence of a plaque. The main aim was to determine contact pressures and forces induced at the interface between an artery wall with hypocellular and calcified plaques and an expanded stent. The results demonstrated the drawbacks of plaque calcification, which triggered a sharp contact pressure and radial force surge at the interface as well as a significant rise in von Mises stress within the vessel, potentially leading to rupture and restenosis. A regression line was then established to relate hypocellular and calcified plaques. The adjusted coefficient of determination indicated a good correlation between contact pressures for calcified and hypocellular plaque models. Regarding the directionality of wall properties, contact pressure and force observations were not significantly different between isotropic and anisotropic arteries. Moreover, variations in friction coefficients did not substantially affect the interfacial contact pressures.
由镍钛诺合金制成的自膨胀支架通常与传统的球囊扩张支架一起使用,为狭窄动脉提供支撑。然而,阻碍支架疗效的一个重大限制是再狭窄,它由内膜增生引发,导致干预后管腔尺寸增加的丧失。在本研究中,开发了一个非线性有限元模型,以模拟支架的压接和扩张及其在存在斑块的情况下与周围血管的相互作用。主要目的是确定在具有低细胞和钙化斑块的动脉壁与扩张支架之间的界面处产生的接触压力和力。结果表明了斑块钙化的缺点,它在界面处引发了急剧的接触压力和径向力激增,以及血管内von Mises应力的显著上升,可能导致破裂和再狭窄。然后建立了一条回归线来关联低细胞和钙化斑块。调整后的决定系数表明钙化斑块模型和低细胞斑块模型的接触压力之间具有良好的相关性。关于壁特性的方向性,各向同性和各向异性动脉之间的接触压力和力观察结果没有显著差异。此外,摩擦系数的变化对界面接触压力没有实质性影响。