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在清醒人体中肺动脉波传播和储器功能:肺血管疾病、呼吸和动态压力测试的影响。

Pulmonary artery wave propagation and reservoir function in conscious man: impact of pulmonary vascular disease, respiration and dynamic stress tests.

机构信息

Department of Biomedicine, Aarhus University, Aarhus, Denmark.

National Heart and Lung Institute, Imperial College London, London, UK.

出版信息

J Physiol. 2017 Oct 15;595(20):6463-6476. doi: 10.1113/JP274385. Epub 2017 Sep 11.

Abstract

KEY POINTS

Wave travel plays an important role in cardiovascular physiology. However, many aspects of pulmonary arterial wave behaviour remain unclear. Wave intensity and reservoir-excess pressure analyses were applied in the pulmonary artery in subjects with and without pulmonary hypertension during spontaneous respiration and dynamic stress tests. Arterial wave energy decreased during expiration and Valsalva manoeuvre due to decreased ventricular preload. Wave energy also decreased during handgrip exercise due to increased heart rate. In pulmonary hypertension patients, the asymptotic pressure at which the microvascular flow ceases, the reservoir pressure related to arterial compliance and the excess pressure caused by waves increased. The reservoir and excess pressures decreased during Valsalva manoeuvre but remained unchanged during handgrip exercise. This study provides insights into the influence of pulmonary vascular disease, spontaneous respiration and dynamic stress tests on pulmonary artery wave propagation and reservoir function.

ABSTRACT

Detailed haemodynamic analysis may provide novel insights into the pulmonary circulation. Therefore, wave intensity and reservoir-excess pressure analyses were applied in the pulmonary artery to characterize changes in wave propagation and reservoir function during spontaneous respiration and dynamic stress tests. Right heart catheterization was performed using a pressure and Doppler flow sensor tipped guidewire to obtain simultaneous pressure and flow velocity measurements in the pulmonary artery in control subjects and patients with pulmonary arterial hypertension (PAH) at rest. In controls, recordings were also obtained during Valsalva manoeuvre and handgrip exercise. The asymptotic pressure at which the flow through the microcirculation ceases, the reservoir pressure related to arterial compliance and the excess pressure caused by arterial waves increased in PAH patients compared to controls. The systolic and diastolic rate constants also increased, while the diastolic time constant decreased. The forward compression wave energy decreased by ∼8% in controls and ∼6% in PAH patients during expiration compared to inspiration, while the wave speed remained unchanged throughout the respiratory cycle. Wave energy decreased during Valsalva manoeuvre (by ∼45%) and handgrip exercise (by ∼27%) with unaffected wave speed. Moreover, the reservoir and excess pressures decreased during Valsalva manoeuvre but remained unaltered during handgrip exercise. In conclusion, reservoir-excess pressure analysis applied to the pulmonary artery revealed distinctive differences between controls and PAH patients. Variations in the ventricular preload and afterload influence pulmonary arterial wave propagation as demonstrated by changes in wave energy during spontaneous respiration and dynamic stress tests.

摘要

关键点

波传播在心血管生理学中起着重要作用。然而,肺动 脉波行为的许多方面仍不清楚。在自主呼吸和动态应激测试期间,应用于肺动脉中的波强和储器-过剩压力分析,研究了有和无肺动脉高压的受试者的肺动脉波行为。由于心室前负荷降低,在呼气和瓦尔萨尔瓦动作期间动脉波能量降低。由于心率增加,在手握运动期间,波能量也降低。在肺动脉高压患者中,微血管血流停止的渐近压力、与动脉顺应性相关的储器压力以及由波引起的过剩压力增加。在瓦尔萨尔瓦动作期间,储器和过剩压力降低,但在手握运动期间保持不变。这项研究提供了关于肺血管疾病、自主呼吸和动态应激测试对肺动脉波传播和储器功能的影响的见解。

摘要

详细的血液动力学分析可能为肺循环提供新的见解。因此,应用波强和储器-过剩压力分析来描述自主呼吸和动态应激测试期间波传播和储器功能的变化。使用压力和多普勒流速传感器尖端导丝进行右心导管检查,以在休息时获得对照组和肺动脉高压 (PAH) 患者的肺动脉中的压力和流速测量值。在对照组中,还在瓦尔萨尔瓦动作和手握运动期间进行记录。与对照组相比,在 PAH 患者中,微循环中血流停止的渐近压力、与动脉顺应性相关的储器压力和动脉波引起的过剩压力增加。收缩和舒张速率常数也增加,而舒张时间常数降低。与吸气相比,在对照组中,呼气期间前向压缩波能量降低约 8%,在 PAH 患者中降低约 6%,而波速在整个呼吸周期中保持不变。在瓦尔萨尔瓦动作(降低约 45%)和手握运动(降低约 27%)期间,波能量降低,而波速不受影响。此外,在瓦尔萨尔瓦动作期间,储器和过剩压力降低,但在手握运动期间保持不变。总之,应用于肺动脉的储器-过剩压力分析揭示了对照组和 PAH 患者之间的明显差异。心室前负荷和后负荷的变化通过在自主呼吸和动态应激测试期间波能量的变化影响肺动脉波传播。

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