PolitoBIOMed Lab, Department of Mechanical and Aerospace Engineering, Politecnico di Torino, Corso Duca degli Abruzzi, 24, 10129, Turin, Italy.
Department of Cardiology, Biomedical Engineering, Erasmus MC, Rotterdam, The Netherlands.
Ann Biomed Eng. 2019 Feb;47(2):425-438. doi: 10.1007/s10439-018-02169-x. Epub 2018 Nov 28.
Arterial hemodynamics is markedly characterized by the presence of helical flow patterns. Previous observations suggest that arterial helical blood flow is of physiological significance, and that its quantitative analysis holds promise for clinical applications. In particular, it has been reported that distinguishable helical flow patterns are potentially atheroprotective in the carotid bifurcation as they suppress flow disturbances. In this context, there is a knowledge gap about the physiological significance of helical flow in coronary arteries, a prominent site of atherosclerotic plaque formation. This study aimed at the quantitative assessment of helical blood flow in coronary arteries, and to investigate its possible associations with vascular geometry and with atherogenic wall shear stress (WSS) phenotypes in a representative sample of 30 swine coronary arteries. This study demonstrates that in coronary arteries: (1) the hemodynamics is characterized by counter-rotating bi-helical flow structures; (2) unfavorable conditions of WSS are strongly and inversely associated with helicity intensity (r = - 0.91; p < 0.001), suggesting an atheroprotective role for helical flow in the coronary tree; (3) vascular torsion dictates helical flow features (r = 0.64; p < 0.001). The findings of this work support future studies on the role of helical flow in atherogenesis in coronary arteries.
动脉血液动力学的一个显著特征是存在螺旋流动模式。先前的观察表明,动脉螺旋血流具有生理意义,其定量分析有望应用于临床。特别是,据报道,颈动脉分叉处可区分的螺旋血流模式具有潜在的抗动脉粥样硬化作用,因为它们可以抑制血流紊乱。在这种情况下,关于冠状动脉(动脉粥样硬化斑块形成的主要部位)中螺旋血流的生理意义,人们知之甚少。本研究旨在定量评估冠状动脉中的螺旋血流,并在 30 个猪冠状动脉的代表性样本中,研究其与血管几何形状和致动脉粥样硬化壁切应力 (WSS) 表型的可能关联。本研究表明,在冠状动脉中:(1)血流动力学的特征是反向旋转的双螺旋流动结构;(2)WSS 的不利条件与螺旋强度呈强烈负相关(r=-0.91;p<0.001),表明螺旋流在冠状动脉树中具有抗动脉粥样硬化作用;(3)血管扭转决定了螺旋流的特征(r=0.64;p<0.001)。这项工作的发现支持了未来关于螺旋流在冠状动脉粥样发生中的作用的研究。