Tanabe N, Todoran T M, Zenk G M, Aono J, Wagner W W, Presson R G
Department of Anesthesiology, Indiana University School of Medicine, Indianapolis, Indiana 46202-5120, USA.
J Appl Physiol (1985). 2000 Nov;89(5):1943-8. doi: 10.1152/jappl.2000.89.5.1943.
Perfusion of the pulmonary acinus has been shown to be generally homogeneous, but there is a significant component that is heterogeneous. To investigate the contribution of the alveolar septal capillary network to acinar perfusion heterogeneity, the passage of fluorescent dye boluses through the subpleural microcirculation of isolated dog lung lobes was videotaped using fluorescence microscopy. As the videotapes were replayed, dye-dilution curves were recorded from each of the tributary branches of Y-shaped venules that drained single acini. For each Y-shaped venule, the mean appearance time difference between the pair of tributary branches was calculated from the dye curves. When the complex septal capillary networks were derecruited by high positive airway pressure, venular perfusion became proportionally more homogeneous. This result shows that septal capillary resistance and pathlength differences are important contributors to intra-acinar perfusion heterogeneity.
肺腺泡的灌注通常显示为均匀的,但存在一个显著的异质性成分。为了研究肺泡间隔毛细血管网络对腺泡灌注异质性的贡献,使用荧光显微镜对荧光染料团块通过离体犬肺叶胸膜下微循环的过程进行录像。在重放录像时,从引流单个腺泡的Y形小静脉的每个分支记录染料稀释曲线。对于每个Y形小静脉,根据染料曲线计算分支对之间的平均出现时间差。当通过高的正气道压力使复杂的间隔毛细血管网络失用后,小静脉灌注变得相应地更加均匀。这一结果表明,间隔毛细血管阻力和路径长度差异是腺泡内灌注异质性的重要因素。