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The natural matching of harmonic responses in the pulmonary circulation

机译:肺循环中谐波反应的自然匹配

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Key points The right ventricle of the mammal heart is highly sensitive to the afterload imposed by a combination of the pulmonary circulation and the retrograde contribution of the left heart. Right ventricular afterload can be analysed in terms of pulmonary artery input impedance, which we were able to decompose as the result of the harmonic frequency responses of the pulmonary vessels and the left heart attached in series. Using spectral methods, we found a natural matching between the pulmonary vasculature and the left chambers of the heart. This coupling implies that the upstream transmission of the left heart frequency‐response has favourable effects on the pulmonary tree. This physiological mechanism protects the right ventricle against acute changes in preload, and its impairment may be a relevant contribution to right ventricle dysfunction in pulmonary hypertension. Abstract The right ventricle (RV) of the mammal heart is highly sensitive to the afterload imposed by the pulmonary circulation, and the left heart (LH) retrogradely contributes significantly to this vascular load. Transmission‐line theory anticipates that the degree of matching between the frequency responses of the pulmonary vasculature and the LH should modulate the global right haemodynamic burden. We measured simultaneous high‐fidelity flow (pulmonary artery) and pressure (pulmonary artery and left atrium) in 18 healthy minipigs under acute haemodynamic interventions. From these data, we decomposed the impedance spectra of the total right‐circulation system into the impedance of the pulmonary vessels and the harmonic response of the LH. For frequencies above the first harmonic, total impedance was below the pulmonary impedance during all phases ( P ??0.001; pooled phases), demonstrating a favourable effect of the LH harmonic response on RV pulsatile load: the LH harmonic response was responsible for a 20% reduction of pulse pulmonary artery pressure ( P ??0.001 vs . a theoretical purely‐resistive response) and a 15% increase of pulmonary compliance ( P ?=?0.009). This effect on compliance was highest during acute volume overload. In the normal right circulation, the longitudinal impedance of the pulmonary vasculature is matched to the harmonic response of the LH in a way that efficiently reduces the pulmonary pulsatile vascular load. This source of interaction between the right and left circulations of mammals protects the RV against excessive afterload during acute volume transients and its disruption may be an important contributor to pulmonary hypertension.
机译:键点哺乳动物心脏的右心室对由肺循环和左心的逆行贡献的组合施加的后载非常敏感。可以根据肺动脉输入阻抗分析右心室后荷载,这是我们能够作为肺血管和左侧串联附加的左心的结果分解。使用光谱方法,我们发现肺脉管系统与心脏左腔室之间的自然匹配。该耦合意味着左心频 - 响应的上游传输对肺树上有良好的影响。这种生理机制可以保护右心室免受预载的急性变化,其损伤可能是肺动脉高压右心室功能障碍的相关贡献。摘要哺乳动物心脏的右心室(RV)对肺循环施加的后载非常敏感,左心(LH)对该血管载荷逆行地贡献显着贡献。传输线理论预计,肺血管的频率响应和LH之间的匹配度应该调节全球正确的血流动力学负担。在急性血液动力学干预措施下,我们在18个健康的微型剂中测量了同时的高保真流量(肺动脉)和压力(肺动脉和左心房)。从这些数据中,我们将总右循环系统的阻抗光谱分解为肺血管的阻抗和LH的谐波响应。对于高于第一谐波的频率,总阻抗在所有相期间低于肺部阻抗(P?<0.001;汇集阶段),展示了LH谐波响应对RV脉动负荷的有利影响:LH谐波响应负责脉冲肺动脉压的20%降低(p≤0.001vs。理论纯电阻响应的15%增加(p?= 0.009)。在急性体积过载时,对依从性的这种影响最高。在正常的循环中,肺脉管系统的纵向阻抗以有效降低肺脉冲血管载荷的方式与LH的谐波响应相匹配。这种哺乳动物左右循环之间的相互作用来源可以保护RV免受急性体积瞬变的过载,其破坏可能是肺动脉高压的重要因素。

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