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Heart Valve Biomechanics and Underlying Mechanobiology

机译:心脏瓣膜生物力学及其基础力学生物学

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摘要

Heart valves control unidirectional blood flow within the heart during the cardiac cycle. They have a remarkable ability to withstand the demanding mechanical environment of the heart, achieving lifetime durability by processes involving the ongoing remodeling of the extracellular matrix. The focus of this review is on heart valve functional physiology, with insights into the link between disease-induced alterations in valve geometry, tissue stress, and the subsequent cell mechanobiological responses and tissue remodeling. We begin with an overview of the fundamentals of heart valve physiology and the characteristics and functions of valve interstitial cells (VICs). We then provide an overview of current experimental and computational approaches that connect VIC mechanobiological response to organ- and tissue-level deformations and improve our understanding of the underlying functional physiology of heart valves. We conclude with a summary of future trends and offer an outlook for the future of heart valve mechanobiology, specifically, multiscale modeling approaches, and the potential directions and possible challenges of research development.
机译:心脏瓣膜在心动周期期间控制心脏内的单向血流。它们具有出色的承受心脏机械环境的能力,可通过涉及细胞外基质不断重塑的过程获得终生耐用性。这篇综述的重点是心脏瓣膜功能生理学,深入了解疾病引起的瓣膜几何形状改变,组织应力以及随后的细胞力学生物学反应和组织重塑之间的联系。我们首先概述心脏瓣膜生理学的基本原理以及瓣膜间质细胞(VIC)的特征和功能。然后,我们提供了将VIC机械生物学响应与器官和组织水平的变形联系起来的当前实验和计算方法的概述,并增进了我们对心脏瓣膜的潜在功能生理学的理解。我们在总结未来趋势的同时总结了心脏瓣膜力学生物学的未来,特别是多尺度建模方法以及研究发展的潜在方向和可能面临的挑战。

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