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Physiologic Basis and Pathophysiologic Implications of the Diastolic Properties of the Cardiac Muscle

机译:心肌舒张特性的生理基础和病理生理意义

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摘要

Although systole was for long considered the core of cardiac function, hemodynamic performance is evenly dependent on appropriate systolic and diastolic functions. The recognition that isolated diastolic dysfunction is the major culprit for approximately fifty percent of all heart failure cases imposes a deeper understanding of its underlying mechanisms so that better diagnostic and therapeutic strategies can be designed. Risk factors leading to diastolic dysfunction affect myocardial relaxation and/or its material properties by disrupting the homeostasis of cardiomyocytes as well as their relation with surrounding matrix and vascular structures. As a consequence, slower ventricular relaxation and higher myocardial stiffness may result in higher ventricular filling pressures and in the risk of hemodynamic decompensation. Thus, determining the mechanisms of diastolic function and their implications in the pathophysiology of heart failure with normal ejection fraction has become a prominent field in basic and clinical research.
机译:尽管长期以来人们认为收缩期是心脏功能的核心,但血流动力学性能平均取决于适当的收缩和舒张功能。认识到孤立的舒张功能障碍是所有心力衰竭病例的约50%的罪魁祸首,这使人们对其基本机制有了更深入的了解,从而可以设计出更好的诊断和治疗策略。导致舒张功能障碍的危险因素会破坏心肌细胞的稳态以及它们与周围基质和血管结构的关系,从而影响心肌舒张和/或其物质特性。结果,较慢的心室舒张和较高的心肌僵硬可能导致较高的心室充盈压和血液动力学失代偿的风险。因此,确定舒张功能的机制及其对射血分数正常的心力衰竭的病理生理学的影响已成为基础和临床研究的重要领域。

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