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Effect of pulmonary blood flow on the exchange between the circulating and marginating pool of polymorphonuclear leukocytes in dog lungs.

机译:肺血流量对狗肺中多形核白细胞循环和边缘池之间交换的影响。

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摘要

The effect of pulmonary blood flow on the exchange between the circulating was marginating pool of polymorphonuclear leukocytes (PMN) was examined in three sets of experiments. In the first we used the double indicator dilution technique with labeled PMN and erythrocytes (RBC) to calculate the percent extraction and percent recovery of PMN at different levels of cardiac output (CO). In the second group of experiments we took advantage of the wide range of blood flow in the lung to determine the effect of regional blood flow on regional PMN retention, and in the third set we measured total leukocyte (WBC) and PMN counts in simultaneous samples from the pulmonary artery and aorta over a wide range of cardiac output. The studies showed that 80-90% of the labeled PMN were removed in a single pass through the lung and that regional retention of labeled PMN and A-V differences for unlabeled PMN increased with decreasing blood flow. The data for regional retention of labeled PMN and the A-V differences observed for unlabeled cells both fit the equation Y = A + Be-cx (where A + B = 100), which showed that PMN accumulate in the lung as blood flow is reduced. We conclude that a dynamic equilibrium exists between the circulating and marginating pools of leukocytes in the lung and that blood flow primarily effects the reentry of cells into the circulating pool so that the marginating pool of PMN within the lung accumulates cells when blood flow is reduced below 7 ml/min per g.
机译:在三组实验中检查了肺血流量对循环之间交换交换的影响,即多形核白细胞(PMN)的边缘集聚。首先,我们使用带有标记PMN和红细胞(RBC)的双指示剂稀释技术来计算不同心输出量(CO)下PMN的提取率和回收率。在第二组实验中,我们利用肺中广泛的血流来确定区域血流对区域PMN保留的影响,而在第三组实验中,我们测量了同时样本中的总白细胞(WBC)和PMN计数在广泛的心输出量中来自肺动脉和主动脉。研究表明,单次通过肺部就去除了80-90%的标记PMN,并且随着血流量的减少,标记PMN的区域保留和未标记PMN的A-V差异会增加。标记PMN的区域保留数据和未标记细胞观察到的A-V差异均符合方程Y = A + Be-cx(其中A + B = 100),这表明随着血流量减少,PMN会在肺中积累。我们得出的结论是,肺中白细胞的循环池和边缘池之间存在动态平衡,并且血流主要影响细胞进入循环池的折返,因此当血流减少至低于200℃时,肺内PMN的边缘池会积聚细胞。每克7毫升/分钟。

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