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二、二氧化碳对犬肺传入迷走神经末梢的影响。

II. Effect of CO2 on afferent vagal endings in the canine lung.

作者信息

Coleridge H M, Coleridge J C, Banzett R B

出版信息

Respir Physiol. 1978 Jul;34(1):135-51. doi: 10.1016/0034-5687(78)90053-1.

Abstract

We have attempted to identify the afferent endings responsible for the pulmonary-CO2 ventilatory reflex. We recorded afferent vagal impulses arising from the left lung in anesthetized dogs with separately ventilated lungs. When the left pulmonary artery was occluded, left lung PCO2 fell to 3 mm Hg and slowly-adapting pulmonary stretch receptor activity increased 46%. Firing declined to its original intensity when left lung PCO2 was raised in steps by administration of CO2, firing decreasing most between 2 and 19 mm Hg, and least between 30 and 50 mm Hg. Irritant receptor activity also increased (from 2.8 to 7.4 impulses/sec) after pulmonary arterial occlusion, the effect being reversed by administration of CO2. These procedures caused trivial changes in pulmonary and bronchial C-fiber activity. Effects on both slowly-adapting stretch receptors and irritant receptors appeared to result from a direct action of CO2 on the endings themselves, rather than from mechanical changes in the lung. Changes in slowly-adapting stretch receptor activity provide an adequate explanation for the pulmonary-CO2 ventilatory reflex, the relationship between impulse frequency and lung PCO2 suggesting that these afferents may have a role in limiting CO2 loss under conditions causing hypocapnia, but be less effective in stimulating breathing during hypercapnia.

摘要

我们试图确定负责肺-二氧化碳通气反射的传入神经末梢。我们在肺分别通气的麻醉犬中记录了来自左肺的迷走神经传入冲动。当左肺动脉被阻断时,左肺PCO₂降至3 mmHg,慢适应性肺牵张感受器活动增加46%。当通过给予二氧化碳逐步提高左肺PCO₂时,放电强度降至原来的水平,在2至19 mmHg之间放电减少最多,在30至50 mmHg之间减少最少。肺动脉阻断后,刺激感受器活动也增加了(从2.8次/秒增加到7.4次/秒),给予二氧化碳可逆转这种效应。这些操作对肺和支气管C纤维活动产生的变化很小。对慢适应性牵张感受器和刺激感受器的影响似乎是由于二氧化碳对神经末梢本身的直接作用,而不是由于肺的机械变化。慢适应性牵张感受器活动的变化为肺-二氧化碳通气反射提供了充分的解释,冲动频率与肺PCO₂之间的关系表明,这些传入神经在低碳酸血症情况下可能在限制二氧化碳流失方面发挥作用,但在高碳酸血症期间刺激呼吸的效果较差。

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