基于解剖和扩张数据的冠状动脉毛细血管血流动力学分析。

G S Kassab, K N Le, Y C Fung
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引用次数: 51

摘要

了解心脏健康和疾病需要了解控制冠状动脉毛细血管血流的各种因素。没有一种基于完整的毛细管解剖和弹性的实际数据的冠状动脉毛细血管血流分析。在此之前,我们在实验室获得了一套完整的关于猪冠状动脉毛细血管网络分支模式和血管几何结构的数据。在本研究中,我们使用活体显微镜以压力-直径关系的形式获得了心外膜表面冠状动脉毛细血管的扩张性数据。根据冠状动脉毛细血管网络的解剖学和弹性测量数据、血液流变学、血流的物理规律和适当的边界条件,建立了冠状动脉毛细血管血流的数学模型。构建的模型用于检验冠状动脉血流空间分布的异质性,这是冠状动脉生理学的一个重要问题。该模型的一个有趣的结果是,在毛细管交叉连接存在的情况下,压力和流动的分散性显著降低,流动阻力也降低。最后,我们发现心外膜表面毛细血管的顺应性很小,在舒张状态下对血压下降的影响可以忽略不计。然而,心肌内毛细血管的顺应性尚不清楚,收缩期肌肉收缩与血管弹性的相互作用仍有待研究。
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A hemodynamic analysis of coronary capillary blood flow based on anatomic and distensibility data.

An understanding of cardiac health and disease requires knowledge of the various factors that control coronary capillary blood flow. An analysis of coronary capillary blood flow based on a complete set of actual data on the capillary anatomy and elasticity does not exist. Previously, a complete set of data on the branching pattern and the vascular geometry of the pig coronary capillary network were obtained in our laboratory. In the present study, we obtained distensibility data on the coronary capillary blood vessels on the epicardial surface in the form of a pressure-diameter relationship using intravital microscopy. A mathematical model of the coronary capillary blood flow was then constructed on the basis of measured anatomic and elasticity data of the coronary capillary network, rheology of blood, physical laws governing blood flow, and appropriate boundary conditions. The constructed model was used to examine the heterogeneity of the spatial distribution of coronary blood flow, which is an important issue in coronary physiology. One interesting result of the model is that the dispersions of pressure and flow are significantly reduced in the presence of capillary cross-connections, and the resistance to flow is reduced as well. Finally, we found that the compliance of the epicardial surface capillary vessels is so small that its effect on the blood pressure drop is negligible in the diastolic state. However, the compliance of the intramyocardial capillaries remains unknown, and the interaction of the muscle contraction and blood vessel elasticity in systole remains to be studied.

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