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迷走神经纤维在低氧诱导的呼气末肺容积增加和膈肌活动增强中的作用。

Role of vagal fibers in the hypoxia-induced increases in end-expiratory lung volume and diaphragmatic activity.

作者信息

Bonora M, Vizek M

机构信息

Laboratoire de Physiologie Respiratoire, Faculté de Médecine St-Antoine, 75012 Paris, France.

出版信息

J Appl Physiol (1985). 1997 Sep;83(3):700-6. doi: 10.1152/jappl.1997.83.3.700.

Abstract

The possible role of pulmonary C fibers in the hypoxia-induced concomitant increases in end-expiratory lung volume (EELV) and in the activity of the diaphragm at the end of expiration (DE) were evaluated by measuring the effects of hypoxia (10% O2) on ventilation, EELV, and DE in eight chloralose-urethan anesthetized rats. Recordings were made before and after blocking vagal C fibers and after bilateral vagotomy. C-fiber conduction was blocked by applying capsaicin perineurally to the cervical vagi. The efficiency of C-fiber blockade was tested with intravenous capsaicin and its selectivity by the Hering-Breuer reflex. Perineural capsaicin abolished the reflex apnea induced by intravenous capsaicin and transiently reduced Hering-Breuer reflex. Perineural capsaicin affected neither ventilation, DE, and EELV in air nor the hypoxia-induced increases in these parameters. Vagotomy caused the typical changes of breathing pattern in air, but the ventilatory response to hypoxia was unchanged. Vagotomy performed during hypoxia resulted in large decreases in DE and EELV. Hypoxia increased DE and EELV in vagotomized rats but less than in intact rats. We conclude that the hypoxia-induced increases in EELV and diaphragmatic activity are probably not mediated by vagal C fibers and that vagal afferents are involved but not fully responsible for this phenomenon.

摘要

通过测量低氧(10%氧气)对8只水合氯醛-乌拉坦麻醉大鼠的通气、呼气末肺容积(EELV)和呼气末膈肌活动(DE)的影响,评估肺C纤维在低氧诱导的呼气末肺容积和呼气末膈肌活动同时增加中可能发挥的作用。在阻断迷走神经C纤维之前和之后以及双侧迷走神经切断术后进行记录。通过将辣椒素经神经外膜应用于颈迷走神经来阻断C纤维传导。用静脉注射辣椒素测试C纤维阻断的效率,并用黑林-布雷尔反射测试其选择性。经神经外膜应用辣椒素消除了静脉注射辣椒素诱导的反射性呼吸暂停,并短暂降低了黑林-布雷尔反射。经神经外膜应用辣椒素对空气中的通气、DE和EELV以及低氧诱导的这些参数的增加均无影响。迷走神经切断术导致空气中呼吸模式的典型变化,但对低氧的通气反应未改变。在低氧期间进行迷走神经切断术导致DE和EELV大幅下降。低氧使迷走神经切断术大鼠的DE和EELV增加,但低于完整大鼠。我们得出结论,低氧诱导的EELV和膈肌活动增加可能不是由迷走神经C纤维介导的,迷走神经传入神经参与了这一现象,但并非完全负责。

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