Scanlon T S, Benumof J L
J Appl Physiol Respir Environ Exerc Physiol. 1979 Apr;46(4):658-61. doi: 10.1152/jappl.1979.46.4.658.
In an ongoing series of experiments on mongrel dogs, three dogs were observed to have incomplete lobar fissures (interlobar connection present) between the left upper and left lower lobes. With the interlobar connection unclamped, selective hypoxia of the left lower lobe caused the electromagnetically measured blood flow to the left lower lobe to decrease 41 +/- 4%, whereas with the interlobar connection clamped selective hypoxia of the left lower lobe caused a 52 +/- 4% decrease in left lower lobe flow (P less than 0.05). Following 100% O2 ventilation and with the interlobar connection unclamped, complete occlusion of the left lower lobe bronchus caused no atelectasis or decrease in left lower lobe blood flow, whereas with the interlobar connection clamped complete occlusion of the left lower lobe bronchus caused complete left lower lobe atelectasis and a 58 +/- 3% decrease in left lower lobe blood flow. Histological confirmation of interlobar pulmonary parenchymal connection was obtained in each dog. We conclude that a sufficient amount of interlobar collateral ventilation can occur in dogs with incomplete lobar fissures to prevent absorption atelectasis and alter lobar blood flow reduction usually caused by selective lobar hypoxia.
在对杂种狗进行的一系列持续实验中,观察到三只狗的左上叶和左下叶之间存在不完全的叶间裂(存在叶间连接)。在叶间连接未夹闭的情况下,左下叶的选择性低氧导致通过电磁测量的左下叶血流量减少41±4%,而在叶间连接夹闭的情况下,左下叶的选择性低氧导致左下叶血流量减少52±4%(P<0.05)。在100%氧气通气且叶间连接未夹闭的情况下,左下叶支气管完全闭塞未导致肺不张或左下叶血流量减少,而在叶间连接夹闭的情况下,左下叶支气管完全闭塞导致左下叶完全肺不张且左下叶血流量减少58±3%。每只狗均获得了叶间肺实质连接的组织学证实。我们得出结论,在叶间裂不完全的狗中可发生足够量的叶间侧支通气,以防止吸收性肺不张并改变通常由选择性叶性低氧引起的叶血流量减少。