Dawson C A, Rickaby D A, Linehan J H
J Appl Physiol (1985). 1986 Feb;60(2):402-9. doi: 10.1152/jappl.1986.60.2.402.
We examined the influence of changing outflow pressure, P out, on the vascular and extravascular volumes (QV and QEV, respectively, as measured by indicator dilution) and on the outflow occlusion pressures in isolated dog lung lobes perfused with constant flow. Changing P out had a substantial effect on QV, but not on QEV, whether P out was less than or greater than alveolar pressure, PA. Since QEV did not change with QV, recruitment of previously unperfused vessels did not appear to contribute substantially to the increases in QV when P out was increased. The rapid jump in P out immediately following outflow occlusion was virtually independent of the difference between PA and P out suggesting that the alveolar vessels were an important volume storage site when P out was low relative to PA. We conclude that, over a certain range of pressures, alveolar vessel volume can be controlled by venous pressure even when the change in venous pressure has little effect on arterial pressure (zone 2). Further, we conclude that in zone 3 and within the transition from zone 2 to zone 3 increases in the intralobar blood volume occurring within the alveolar vessels may not require recruitment in the sense of opening of previously unperfused vessels.
我们研究了改变流出压力(Pout)对血管内和血管外容量(分别为QV和QEV,通过指示剂稀释法测量)以及对以恒定流量灌注的离体犬肺叶的流出阻塞压力的影响。无论Pout小于还是大于肺泡压力(PA),改变Pout对QV有显著影响,但对QEV没有影响。由于QEV不随QV变化,当Pout升高时,先前未灌注血管的募集似乎对QV的增加没有实质性贡献。流出阻塞后Pout的快速跃升实际上与PA和Pout之间的差异无关,这表明当Pout相对于PA较低时,肺泡血管是一个重要的容量储存部位。我们得出结论,在一定压力范围内,即使静脉压力变化对动脉压力影响很小(2区),肺泡血管容量也可由静脉压力控制。此外,我们得出结论,在3区以及从2区到3区的过渡范围内,肺泡血管内叶内血容量的增加可能不需要从先前未灌注血管开放的意义上进行募集。