Hollander E H, Wang J J, Dobson G M, Parker K H, Tyberg J V
Departments of Medicine and Physiology and Biophysics, Cardiovascular Research Group, University of Calgary, Calgary, Alberta, Canada, T2N 4N1.
Am J Physiol Heart Circ Physiol. 2001 Aug;281(2):H895-902. doi: 10.1152/ajpheart.2001.281.2.H895.
The pulmonary arterial branching pattern suggests that the early systolic forward-going compression wave (FCW) might be reflected as a backward-going expansion wave (BEW). Accordingly, in 11 open-chest anesthetized dogs we measured proximal pulmonary arterial pressure and flow (velocity) and evaluated wave reflection using wave-intensity analysis under low-volume, high-volume, high-volume + 20 cmH2O positive end-expiratory pressure (PEEP), and hypoxic conditions. We defined the reflection coefficient R as the ratio of the energy of the reflected wave (BEW [-]; backward-going compression wave, BCW [+]) to that of the incident wave (FCW [+]). We found that R = -0.07 +/- 0.02 under low-volume conditions, which increased in absolute magnitude to -0.20 +/- 0.04 (P < 0.01) under high-volume conditions. The addition of PEEP increased R further to -0.26 +/- 0.02 (P < 0.01). All of these BEWs were reflected from a site ~3 cm downstream. During hypoxia, the BEW was maintained and a BCW appeared (R = +0.09 +/- 0.03) from a closed-end site ~9 cm downstream. The normal pulmonary arterial circulation in the open-chest dog is characterized by negative wave reflection tending to facilitate right ventricular ejection; this reflection increases with increasing blood volume and PEEP.
肺动脉分支模式表明,收缩早期的正向压缩波(FCW)可能会被反射为反向扩张波(BEW)。因此,我们在11只开胸麻醉犬中测量了近端肺动脉压力和血流(速度),并在低血容量、高血容量、高血容量 + 20 cmH₂O呼气末正压(PEEP)以及低氧条件下,使用波强度分析评估了波反射。我们将反射系数R定义为反射波(BEW [-];反向压缩波,BCW [+])与入射波(FCW [+])能量之比。我们发现,在低血容量条件下R = -0.07 ± 0.02,在高血容量条件下绝对值增加到 -0.20 ± 0.04(P < 0.01)。添加PEEP后,R进一步增加到 -0.26 ± 0.02(P < 0.01)。所有这些BEW均从下游约3 cm处反射而来。在低氧期间,BEW持续存在,并且在下游约9 cm处的封闭端部位出现了BCW(R = +0.09 ± 0.03)。开胸犬的正常肺动脉循环的特征是负向波反射,这倾向于促进右心室射血;这种反射随着血容量和PEEP的增加而增强。