Division of Cardiovascular Medicine, Department of Medicine, University of Utah School of Medicine, Salt Lake City, Utah, USA.
Division of Cardiothoracic Surgery, Department of Surgery, University of Utah, Salt Lake City, Utah, USA.
Compr Physiol. 2022 Aug 11;12(4):3705-3730. doi: 10.1002/cphy.c210017.
The right ventricle (RV) and pulmonary arterial (PA) tree are inextricably linked, continually transferring energy back and forth in a process known as RV-PA coupling. Healthy organisms maintain this relationship in optimal balance by modulating RV contractility, pulmonary vascular resistance, and compliance to sustain RV-PA coupling through life's many physiologic challenges. Early in states of adaptation to cardiovascular disease-for example, in diastolic heart failure-RV-PA coupling is maintained via a multitude of cellular and mechanical transformations. However, with disease progression, these compensatory mechanisms fail and become maladaptive, leading to the often-fatal state of "uncoupling." Noninvasive imaging modalities, including echocardiography, magnetic resonance imaging, and computed tomography, allow us deeper insight into the state of coupling for an individual patient, providing for prognostication and potential intervention before uncoupling occurs. In this review, we discuss the physiologic foundations of RV-PA coupling, elaborate on the imaging techniques to qualify and quantify it, and correlate these fundamental principles with clinical scenarios in health and disease. © 2022 American Physiological Society. Compr Physiol 12: 1-26, 2022.
右心室(RV)和肺动脉(PA)树是紧密相连的,在 RV-PA 偶联过程中不断地来回传递能量。健康的机体通过调节 RV 收缩性、肺血管阻力和顺应性来维持这种关系处于最佳平衡,从而在生命中的许多生理挑战中维持 RV-PA 偶联。在适应心血管疾病的早期,例如舒张性心力衰竭,RV-PA 偶联通过多种细胞和机械转化来维持。然而,随着疾病的进展,这些代偿机制失效并变得适应不良,导致经常致命的“解偶联”状态。包括超声心动图、磁共振成像和计算机断层扫描在内的非侵入性成像方式使我们能够更深入地了解个体患者的偶联状态,从而在发生解偶联之前进行预后和潜在干预。在这篇综述中,我们讨论了 RV-PA 偶联的生理基础,详细阐述了定性和定量评估它的成像技术,并将这些基本原理与健康和疾病中的临床情况相关联。© 2022 美国生理学会。《综合生理学》12:1-26,2022。