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Mechanics and Microstructure of the Atrioventricular Heart Valve Chordae Tendineae: A Review

机译:房室瓣腱索的力学和微结构:审查。

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摘要

The atrioventricular heart valves (AHVs) are responsible for directing unidirectional blood flow through the heart by properly opening and closing the valve leaflets, which are supported in their function by the chordae tendineae and the papillary muscles. Specifically, the chordae tendineae are critical to distributing forces during systolic closure from the leaflets to the papillary muscles, preventing leaflet prolapse and consequent regurgitation. Current therapies for chordae failure have issues of disease recurrence or suboptimal treatment outcomes. To improve those therapies, researchers have sought to better understand the mechanics and microstructure of the chordae tendineae of the AHVs. The intricate structures of the chordae tendineae have become of increasing interest in recent literature, and there are several key findings that have not been comprehensively summarized in one review. Therefore, in this review paper, we will provide a summary of the current state of biomechanical and microstructural characterizations of the chordae tendineae, and also discuss perspectives for future studies that will aid in a better understanding of the tissue mechanics–microstructure linking of the AHVs’ chordae tendineae, and thereby improve the therapeutics for heart valve diseases caused by chordae failures.
机译:房室心脏瓣膜(AHV)负责通过适当地打开和关闭瓣膜小叶来引导单向血液流过心脏,瓣膜小叶的功能由腱索和乳头肌支撑。特别地,腱索对于在收缩期间从小叶到乳头肌的分布力至关重要,防止小叶脱垂和随之而来的反流。当前用于腱索衰竭的疗法具有疾病复发或治疗效果欠佳的问题。为了改善这些疗法,研究人员试图更好地了解AHV的腱索的力学和微观结构。腱腱索的复杂结构在最近的文献中变得越来越受关注,并且有一些关键发现尚未在一篇综述中得到全面总结。因此,在这篇综述文章中,我们将概述腱索的生物力学和微观结构表征的当前状态,并讨论未来研究的观点,这些观点将有助于更好地理解AHV的组织力学与微观结构的联系。腱索,从而改善由腱索衰竭引起的心脏瓣膜疾病的治疗方法。

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