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Action potentials in parasympathetic and sympathetic efferent fibres to the trachea and lungs of dogs and cats

机译:副交感神经和交感神经传出纤维对狗和猫的气管和肺的动作电位

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摘要

1. Action potentials were recorded from seventy-four single and twenty-nine small multifibre nerve strands efferent to the trachea and lungs of cats and dogs. From the pathway (vagal or sympathetic), spontaneous activity, conduction velocity and responses to various interventions the efferent fibres were classified in the following way.2. Group I, vagal. These had a mean conduction velocity of 9·7 m/sec, and had a respiratory but seldom a cardiac rhythm. Their discharge was inhibited during hypertension caused by injections of adrenaline and during inflation of the lungs, but was increased during tracheal occlusion, stimulation of peripheral chemoreceptors and irritation of the larynx. The fibres are thought to be constrictor to the airways.3. Group II, sympathetic. These had a mean conduction velocity of 0·85 m/sec and usually had inspiratory and cardiac rhythms. Their discharge usually responded qualitatively as that of group I fibres to the various interventions, but with clear quantitative differences. They are divided into three subgroups on the basis of their responses to injections of adrenaline and to asphyxial stimuli.4. Group III, vagal and sympathetic. These had a mean conduction velocity of 9·0 m/sec, very slow discharge rates and often an expiratory and cardiac modulation. They were activated during hypertension due to adrenaline and often by tracheal occlusion, chemoreceptor stimulation, laryngeal irritation and lung inflation. Their motor action is unknown.5. Group IV, vagal and sympathetic. These had conspicuous cardiac rhythms resembling those of vascular baroreceptors, but their discharge could not be correlated with arterial blood pressure. Their mean conduction velocity was 6·6 m/sec. Some were active after combined vagotomy and sympathectomy. Together with some unclassified fibres, those of group IV are thought to be aberrant afferent nerves or collateral afferent branches, and possibly to subserve local reflexes.6. The results are discussed in relation to nervous control of effector tissues in the airways and autonomic nervous control generally.
机译:1.从猫和狗的气管和肺部传出的74条单纤维和29条多纤维细小神经线记录了动作电位。从途径(迷走或交感),自发活动,传导速度和对各种干预的反应,以以下方式对传出纤维进行分类。2。第一组,迷路。它们的平均传导速度为9·7 m / sec,并具有呼吸但很少有心律。在注射肾上腺素引起的高血压和肺部扩张期间,它们的排出受到抑制,但在气管闭塞,刺激周围化学感受器和刺激喉咙时,它们的排出增加。纤维被认为是气道收缩3。第二组,同情。它们的平均传导速度为0·85 m / sec,通常具有吸气和心律。它们的排出通常对第一组纤维的定性反应不同,但数量差异明显。根据对肾上腺素注射和对窒息刺激的反应将它们分为三个亚组。4。第三组,迷走神经和同情心。它们的平均传导速度为9·0 m / sec,放电速度非常慢,并且通常是呼气和心脏调节。它们在高血压期间由于肾上腺素而被激活,并且经常由于气管阻塞,化学感受器刺激,喉咙刺激和肺膨胀而被激活。他们的动作是未知的5。第四组,迷走神经和同情。这些具有明显的心律,类似于血管压力感受器的心律,但其放电与动脉血压无关。它们的平均传导速度为6·6m / sec。一些在迷走神经切断术和交感神经切除术联合后活跃。连同一些未分类的纤维,第四组的纤维被认为是异常传入神经或侧支传入分支,可能有助于局部反射。6。讨论了有关气道中效应组织的神经控制和一般自主神经控制的结果。

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