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心脏-冠状动脉相互作用的研究进展及数学建模的启示

Review of cardiac-coronary interaction and insights from mathematical modeling.

机构信息

Joint Department of Biomedical Engineering, Marquette University and Medical College of Wisconsin, Milwaukee, Wisconsin, USA.

Department of Mechanical Engineering, Michigan State University, East Lansing, Michigan, USA.

出版信息

WIREs Mech Dis. 2024 May-Jun;16(3):e1642. doi: 10.1002/wsbm.1642. Epub 2024 Feb 5.

Abstract

Cardiac-coronary interaction is fundamental to the function of the heart. As one of the highest metabolic organs in the body, the cardiac oxygen demand is met by blood perfusion through the coronary vasculature. The coronary vasculature is largely embedded within the myocardial tissue which is continually contracting and hence squeezing the blood vessels. The myocardium-coronary vessel interaction is two-ways and complex. Here, we review the different types of cardiac-coronary interactions with a focus on insights gained from mathematical models. Specifically, we will consider the following: (1) myocardial-vessel mechanical interaction; (2) metabolic-flow interaction and regulation; (3) perfusion-contraction matching, and (4) chronic interactions between the myocardium and coronary vasculature. We also provide a discussion of the relevant experimental and clinical studies of different types of cardiac-coronary interactions. Finally, we highlight knowledge gaps, key challenges, and limitations of existing mathematical models along with future research directions to understand the unique myocardium-coronary coupling in the heart. This article is categorized under: Cardiovascular Diseases > Computational Models Cardiovascular Diseases > Biomedical Engineering Cardiovascular Diseases > Molecular and Cellular Physiology.

摘要

心脏-冠状动脉相互作用是心脏功能的基础。作为体内代谢需求最高的器官之一,心脏的氧气需求通过冠状动脉血管的血液灌注来满足。冠状动脉血管主要嵌入心肌组织中,心肌组织不断收缩,从而挤压血管。心肌-冠状动脉血管相互作用是双向且复杂的。在这里,我们回顾了不同类型的心脏-冠状动脉相互作用,并重点介绍了从数学模型中获得的见解。具体而言,我们将考虑以下几个方面:(1)心肌-血管的力学相互作用;(2)代谢-血流的相互作用和调节;(3)灌注-收缩匹配;(4)心肌和冠状动脉之间的慢性相互作用。我们还讨论了不同类型的心脏-冠状动脉相互作用的相关实验和临床研究。最后,我们强调了现有数学模型的知识空白、关键挑战和局限性,以及未来研究方向,以了解心脏中独特的心肌-冠状动脉耦联。本文属于以下分类:心血管疾病 > 计算模型心血管疾病 > 生物医学工程心血管疾病 > 分子和细胞生理学。

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