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Overview of mathematical modeling of myocardial blood flow regulation

机译:心肌血流调节数学建模概述

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The oxygen consumption by the heart and its extraction from the coronary arterial blood are the highest among all organs. Any increase in oxygen demand due to a change in heart metabolic activity requires an increase in coronary blood flow. This functional requirement of adjustment of coronary blood flow is mediated by coronary flow regulation to meet the oxygen demand without any discomfort, even under strenuous exercise conditions. The goal of this article is to provide an overview of the theoretical and computational models of coronary flow regulation and to reveal insights into the functioning of a complex physiological system that affects the perfusion requirements of the myocardium. Models for three major control mechanisms of myogenic, flow, and metabolic control are presented. These explain how the flow regulation mechanisms operating over multiple spatial scales from the precapillaries to the large coronary arteries yield the myocardial perfusion characteristics of flow reserve, autoregulation, flow dispersion, and self-similarity. The review not only introduces concepts of coronary blood flow regulation but also presents state-of-the-art advances and their potential to impact the assessment of coronary microvascular dysfunction (CMD), cardiac-coronary coupling in metabolic diseases, and therapies for angina and heart failure. Experimentalists and modelers not trained in these models will have exposure through this review such that the nonintuitive and highly nonlinear behavior of coronary physiology can be understood from a different perspective. This survey highlights knowledge gaps, key challenges, future research directions, and novel paradigms in the modeling of coronary flow regulation.
机译:心脏的氧气消耗及其从冠状动脉血液中的萃取是所有器官中最高的。由于心脏代谢活性的变化导致的氧需求的任何增加需要增加冠状动脉血流。即使在剧烈运动条件下,冠状动脉血流调节调整的这种功能要求是通过冠状动脉血流介导的,以满足氧气需求,即使在剧烈的运动条件下也没有任何不适。本文的目标是概述冠状动脉调节的理论和计算模型,并揭示了影响影响心肌灌注要求的复杂生理系统的功能的见解。提出了肌原遗传,流动和代谢控制的三种主要控制机制的模型。这些解释了在大型冠状动脉预净化的多个空间尺度上运行的流量调节机制如何产生流量储备,自动调节,流动分散和自相似性的心肌灌注特性。审查不仅介绍了冠状动脉血流调节的概念,而且还提出了最先进的进步及其影响冠状动脉微血管功能障碍(CMD),代谢疾病中的心脏冠状动脉偶联,以及心绞痛疗法的潜力心脏衰竭。在这些模型中未培训的实验主义者和建模者将通过本综述曝光,从而可以从不同的角度来理解冠状动脉生理学的非直接和高度非线性行为。本调查突出了知识差距,关键挑战,未来的研究方向和新的范式,以冠状动脉调节的建模。

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