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首页> 外文期刊>American Journal of Physiology >Hemodynamic performance of the Fontan circulation compared with a normal biventricular circulation: a computational model study
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Hemodynamic performance of the Fontan circulation compared with a normal biventricular circulation: a computational model study

机译:Fontan循环的血流动力学性能与正常的双心循环相比:计算模型研究

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摘要

The physiological limitations of the Fontan circulation have been extensively addressed in the literature. Many studies emphasized the importance of pulmonary vascular resistance in determining cardiac output (CO) but gave little attention to other cardiovascular properties that may play considerable roles as well. The present study was aimed to systemically investigate the effects of various cardiovascular properties on clinically relevant hemodynamic variables (e.g., CO and central venous pressure). To this aim, a computational modeling method was employed. The constructed models provided a useful tool for quantifying the hemodynamic effects of any cardiovascular property of interest by varying the corresponding model parameters in model-based simulations. Herein, the Fontan circulation was studied compared with a normal biventricular circulation so as to highlight the unique characteristics of the Fontan circulation. Based on a series of numerical experiments, it was found that 1) pulmonary vascular resistance, ventricular diastolic function, and systemic vascular compliance play a major role, while heart rate, ventricular contractility, and systemic vascular resistance play a secondary role in the regulation of CO in the Fontan circulation; 2) CO is nonlinearly related to any single cardiovascular property, with their relationship being simultaneously influenced by other cardiovascular properties; and 3) the stability of central venous pressure is significantly reduced in the Fontan circulation. The findings suggest that the hemodynamic performance of the Fontan circulation is codetermined by various cardiovascular properties and hence a full understanding of patient-specific cardiovascular conditions is necessary to optimize the treatment of Fontan patients.
机译:文献中,Fontan循环的生理局限已被广泛解决。许多研究强调了肺血管阻力在确定心脏输出(CO)中的重要性,但很少关注可能发挥相当大的角色的其他心血管性质。本研究旨在全身探讨各种心血管性质对临床相关血液动力变量(例如CO和中心静脉压力)的影响。为此目的,采用计算建模方法。构造模型提供了一种有用的工具,用于通过改变基于模型的模拟中的相应模型参数来量化任何感兴趣的任何心血管性质的血流动力学效应。在此,与正常的双心循环相比,研究了Fontan循环,以突出Fontan循环的独特特征。基于一系列数值实验,发现1)肺血管抗性,心室舒张功能和全身血管顺应性起主要作用,而心率,心室收缩性和全身血管阻力在调节中发挥二级作用CO在Fontan循环中; 2)CO是与任何单一心血管性质的非线性相关的,其关系与其他心血管性质同时影响; 3)在Fontan循环中,中央静脉压力的稳定性显着降低。结果表明,Fontan循环的血流动力学性能通过各种心血管性质进行了共同,因此对优化Fontan患者的治疗是必要的对患者特异性心血管条件的全面了解。

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