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Myocardial bridges spared from atherosclerosis: overview of the underlying mechanisms.

机译:摆脱动脉粥样硬化的心肌桥:潜在机制的概述。

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摘要

Myocardial bridging constitutes a congenital, usually benign, coronary abnormality defined as a segment of a major epicardial coronary artery that follows an intramural course through the myocardium. On the basis of clinical and histopathological data, myocardial bridges appear to be spared from atherosclerosis. Although the mechanisms involved are largely unknown, the surrounding myocardium appears to be a key factor by generating a unique atheroprotective hemodynamic microenvironment within bridges. The main components of this environment include low tensile stress and high shear stress. Reduced coronary wall motion due to external support of the surrounding myocardium may also play a role. Better investigation of these mechanisms in appropriate animal models is anticipated to advance our understanding of the pathophysiology of atherosclerosis, providing a framework for the development of new atheroprotective strategies.
机译:心肌桥接构成先天性的,通常是良性的,冠状动脉异常,定义为主要的心外膜冠状动脉的一部分,该部分遵循壁内过程穿过心肌。根据临床和组织病理学数据,似乎可以避免动脉粥样硬化。尽管所涉及的机制很大程度上未知,但周围的心肌似乎是通过在桥内产生独特的抗动脉粥样硬化的血液动力学微环境而成为关键因素。这种环境的主要成分包括低拉伸应力和高剪切应力。由于周围心肌的外部支撑,冠状动脉壁运动减少也可能起一定作用。可以在适当的动物模型中对这些机制进行更好的研究,有望增进我们对动脉粥样硬化的病理生理学的了解,为开发新的动脉粥样硬化防护策略提供框架。

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