Su J, Hilberg O, Howard L, Simonsen U, Hughes A D
Department of Biomedicine - Pharmacology, Aarhus University, Aarhus, Denmark.
National Heart and Lung Institute, Imperial College London, London, UK.
Acta Physiol (Oxf). 2016 Dec;218(4):239-249. doi: 10.1111/apha.12803. Epub 2016 Sep 29.
Mean pulmonary arterial pressure and pulmonary vascular resistance (PVR) remain the most common haemodynamic measures to evaluate the severity and prognosis of pulmonary hypertension. However, PVR only captures the non-oscillatory component of the right ventricular hydraulic load and neglects the dynamic compliance of the pulmonary arteries and the contribution of wave transmission. Wave intensity analysis offers an alternative way to assess the pulmonary vasculature in health and disease. Wave speed is a measure of arterial stiffness, and the magnitude and timing of wave reflection provide information on the degree of impedance mismatch between the proximal and distal circulation. Studies in the pulmonary artery have demonstrated distinct differences in arterial wave propagation between individuals with and without pulmonary vascular disease. Notably, greater wave speed and greater wave reflection are observed in patients with pulmonary hypertension and in animal models exposed to hypoxia. Studying wave propagation makes a valuable contribution to the assessment of the arterial system in pulmonary hypertension, and here, we briefly review the current state of knowledge of the methods used to evaluate arterial waves in the pulmonary artery.
平均肺动脉压和肺血管阻力(PVR)仍然是评估肺动脉高压严重程度和预后最常用的血流动力学指标。然而,PVR仅反映右心室液压负荷的非振荡成分,而忽略了肺动脉的动态顺应性和波传播的作用。波强度分析为评估健康和疾病状态下的肺血管系统提供了另一种方法。波速是动脉僵硬度的指标,波反射的大小和时间提供了关于近端和远端循环之间阻抗失配程度的信息。对肺动脉的研究表明,有无肺血管疾病的个体之间动脉波传播存在明显差异。值得注意的是,在肺动脉高压患者和暴露于低氧环境的动物模型中观察到更高的波速和更强的波反射。研究波传播对评估肺动脉高压中的动脉系统有重要贡献,在此,我们简要回顾用于评估肺动脉中动脉波的方法的当前知识状态。