Kaufman M P, Iwamoto G A, Ashton J H, Cassidy S S
Circ Res. 1982 Oct;51(4):525-31. doi: 10.1161/01.res.51.4.525.
In dogs, inflating the lungs to pressures of 9 cm H2O or less reflexly increases heart rate, whereas inflating the lungs to pressures of 10-30 cm H2O reflexly decreases heart rate. The afferent fibers responsible for the cardioacceleration travel in the vagus nerves and are believed to be pulmonary stretch receptors, whereas the afferent responsible for the deceleration also travel in the vagus nerves, but are believed to be lung C-fibers. To identify the afferents responsible for these effects, we recorded the impulse activity of vagal afferents with endings in the left lung, while we slowly inflated that lung to 30-45 cm H2O. We found that 12 slowly adapting receptors fired at significantly lower inflation pressures than did 10 rapidly adapting receptors (5.8 +/- 1.5 vs. 13.5 +/- 2.2 cm H2O, respectively). We also found that 13 pulmonary C-fibers fired at significantly lower inflation pressures than did 10 bronchial C-fibers (16.4 +/- 1.8 vs 26.5 %/- 2.9 cm H2O, respectively). We conclude that slowly adapting receptors are likely to be responsible for the cardioacceleration evoked by low levels of inflation, and that both pulmonary and bronchial C-fibers are likely to be responsible for the cardiodeceleration evoked by high levels of inflation.
在犬类中,将肺充气至9厘米水柱或更低压力会反射性地增加心率,而将肺充气至10 - 30厘米水柱压力则会反射性地降低心率。负责心脏加速的传入纤维走行于迷走神经中,被认为是肺牵张感受器,而负责心脏减速的传入纤维也走行于迷走神经中,但被认为是肺C纤维。为了确定介导这些效应的传入纤维,我们记录了在左肺有末梢的迷走神经传入纤维的冲动活动,同时将该肺缓慢充气至30 - 45厘米水柱。我们发现,12个慢适应感受器在显著低于10个快适应感受器的充气压力下放电(分别为5.8±1.5厘米水柱和13.5±2.2厘米水柱)。我们还发现,13根肺C纤维在显著低于10根支气管C纤维的充气压力下放电(分别为16.4±1.8厘米水柱和26.5±2.9厘米水柱)。我们得出结论,慢适应感受器可能是低水平充气诱发心脏加速的原因,而肺C纤维和支气管C纤维都可能是高水平充气诱发心脏减速的原因。