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Influence of lumen shape and vessel geometry on plaque stresses: possible role in the increased vulnerability of a remodelled vessel and the shoulder of a plaque

机译:管腔形状和血管几何形状对斑块应力的影响:可能在重塑血管的易损性和斑块肩的增加中发挥作用

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摘要

>Objective: To use finite element modelling to look at the impact of lumen shape and vessel geometry on stress distribution in a vessel.>Methods: A finite element model of an atherosclerotic plaque in a coronary artery was created and a non-linear analysis with Ogden strain energy function was done. The three most common shapes seen in an artery with an eccentric plaque—namely an elliptical lumen inside a circular vessel (A), a circular lumen inside an elliptical vessel, typical of a vessel with positive remodelling (B), and a circular lumen inside a circular vessel (C)—were modelled with and without lipid. Stress was analysed in the region of the fibrous cap separating the lumen from the plaque and the region of maximum stress along the circumference of the lumen was noted.>Results: In a normal circular shaped coronary artery, the haemodynamic stresses were uniformly distributed all around the circle. However, if the circle was changed to an ellipse, the stresses were redistributed along the major axis and dropped substantially along the minor axis. The stresses in a positively remodelled vessel (B) were significantly greater than in A and C, by almost 100%. Moreover, the haemodynamic stresses increased significantly towards the major axis or the shoulder in A and B, due to lumen shape and vessel geometry alone, even in the absence of lipid in the model. The stresses also had a direct relation with the thickness of the lipid pool and an inverse relation with cap thickness and lumen stenosis.>Conclusions: The increased vulnerability of the shoulder region of a plaque and a remodelled coronary artery are due, apart from other factors, to increased biomechanical stresses as a result of lumen shape and vessel geometry.
机译:>目的:使用有限元建模来研究管腔形状和血管几何形状对血管应力分布的影响。>方法:在动脉粥样硬化斑块中的有限元模型创建冠状动脉,并使用Ogden应变能函数进行了非线性分析。在具有偏心斑块的动脉中看到的三种最常见的形状-圆形血管内的椭圆形内腔(A),椭圆形血管内的圆形内腔(典型为具有正重塑的血管)(B)和内部圆形内腔圆形容器(C)-使用和不使用脂质进行建模。分析了将管腔与斑块隔开的纤维帽区域的应力,并记录了沿管腔圆周的最大应力区域。>结果:在正常的圆形冠状动脉中,血流动力学应力均匀分布在整个圆上。但是,如果将圆更改为椭圆形,则应力会沿主轴重新分布,而沿主轴会大幅度下降。完全重塑的容器(B)中的应力明显大于A和C中的应力,几乎达到100%。此外,由于仅管腔形状和血管几何形状,即使模型中没有脂质,血流动力学应力也会在A和B中朝主轴或肩部显着增加。应力还与脂质池的厚度成正比,与帽厚度和管腔狭窄成反比。>结论:斑块的肩部区域和冠状动脉重塑的脆弱性增加是除了其他因素外,还有其他原因,这是由于管腔形状和血管几何形状增加了生物力学应力。

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