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Numerical simulation of pulsatile flow in a compliant curved tube model of a coronary artery.

机译:冠状动脉顺应性弯曲管模型中脉动流的数值模拟。

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The endothelial cells (ECs) lining a blood vessel wall are exposed to both the wall shear stress (WSS) of blood flow and the circumferential strain (CS) of pulsing artery wall motion. These two forces and their interaction are believed to play a role in determining remodeling of the vessel wall and development of arterial disease (atherosclerosis). This study focused on the WSS and CS dynamic behavior in a compliant model of a coronary artery taking into account the curvature of the bending artery and physiological radial wall motion. A three-dimensional finite element model with transient flow and moving boundaries was set up to simulate pulsatile flow with physiological pressure and flow wave forms characteristic of the coronary arteries. The characteristic coronary artery curvature and flow conditions applied to the simulation were: aspect ratio (lambda) = 10, diameter variation (DV) = 6 percent, mean Reynolds number (Re) = 150, and unsteadiness parameter (alpha) = 3. The results show that mean WSS is about 50 percent lower on the inside wall than the outside wall while WSS oscillation is stronger on the inside wall. The stress phase angle (SPA) between CS and WSS, which characterizes the dynamics of the mechanical force pattern applied to the endothelial cell layer, shows that CS and WSS are more out of phase in the coronaries than in any other region of the circulation (-220 deg on the outside wall, -250 deg on the inside wall). This suggests that in addition to WSS, SPA may play a role in localization of coronary atherosclerosis.
机译:衬在血管壁上的内皮细胞(EC)暴露于血流的壁切应力(WSS)和脉动动脉壁运动的圆周应变(CS)。据信这两种力及其相互作用在确定血管壁的重塑和动脉疾病(动脉粥样硬化)的发展中起着作用。这项研究集中在冠状动脉顺应性模型中的WSS和CS动态行为,其中考虑了弯曲动脉的曲率和生理性径向壁运动。建立了具有瞬时流动和运动边界的三维有限元模型,以模拟具有生理压力和冠状动脉流动波形的脉动流动。用于模拟的特征性冠状动脉曲率和血流条件为:长宽比(λ)= 10,直径变化(DV)= 6%,平均雷诺数(Re)= 150和不稳定参数(alpha)= 3。结果表明,内壁的平均WSS振动要比外壁低50%,而内壁的WSS振动要强。 CS和WSS之间的应力相角(SPA)表征了施加于内皮细胞层的机械力模式的动力学特性,显示出CS和WSS在冠状动脉中的异相比在循环的任何其他区域都更大(外墙上为-220度,内墙上为-250度)。这表明除了WSS之外,SPA还可能在冠状动脉粥样硬化的局部化中起作用。

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