Department of Mechanics, Politecnico di Torino, Corso Duca degli Abruzzi, 24, 10129, Turin, Italy.
Biomech Model Mechanobiol. 2011 Jun;10(3):339-55. doi: 10.1007/s10237-010-0238-2. Epub 2010 Jul 22.
The hemodynamics within the aorta of five healthy humans were investigated to gain insight into the complex helical flow patterns that arise from the existence of asymmetries in the aortic region. The adopted approach is aimed at (1) overcoming the relative paucity of quantitative data regarding helical blood flow dynamics in the human aorta and (2) identifying common characteristics in physiological aortic flow topology, in terms of its helical content. Four-dimensional phase-contrast magnetic resonance imaging (4D PC MRI) was combined with algorithms for the calculation of advanced fluid dynamics in this study. These algorithms allowed us to obtain a 4D representation of intra-aortic flow fields and to quantify the aortic helical flow. For our purposes, helicity was used as a measure of the alignment of the velocity and the vorticity. There were two key findings of our study: (1) intra-individual analysis revealed a statistically significant difference in the helical content at different phases of systole and (2) group analysis suggested that aortic helical blood flow dynamics is an emerging behavior that is common to normal individuals. Our results also suggest that helical flow might be caused by natural optimization of fluid transport processes in the cardiovascular system, aimed at obtaining efficient perfusion. The approach here applied to assess in vivo helical blood flow could be the starting point to elucidate the role played by helicity in the generation and decay of rotating flows in the thoracic aorta.
本研究旨在深入了解主动脉内复杂的螺旋流动模式,这些模式源于主动脉区域的不对称性。我们调查了 5 名健康人类的主动脉内血液动力学,采用的方法旨在:(1) 克服有关人类主动脉内螺旋血流动力学的定量数据相对较少的问题;(2) 确定生理主动脉流拓扑结构的共同特征,就其螺旋内容而言。在这项研究中,我们将四维相位对比磁共振成像(4D PC MRI)与用于计算先进流体动力学的算法相结合。这些算法使我们能够获得主动脉内流场的 4D 表示,并量化主动脉螺旋流动。为了达到我们的目的,螺旋度被用作速度和涡度排列的度量。我们的研究有两个主要发现:(1) 个体内分析显示在收缩期的不同相位,螺旋含量存在统计学上的显著差异;(2) 组分析表明,主动脉螺旋血流动力学是一种常见于正常个体的新兴行为。我们的结果还表明,螺旋流可能是心血管系统中流体输送过程自然优化的结果,旨在获得有效的灌注。此处应用的评估体内螺旋血流的方法可以作为阐明螺旋度在胸主动脉中旋转流的产生和衰减中所起作用的起点。