Suppr超能文献

运动中犬吸入组胺气雾剂后出现快速浅呼吸的机制。

The mechanism of rapid, shallow breathing after inhaling histamine aerosol in exercising dogs.

作者信息

Bleecker E R, Cotton D J, Fischer S P, Graf P D, Gold W M, Nadel J A

出版信息

Am Rev Respir Dis. 1976 Nov;114(5):909-16. doi: 10.1164/arrd.1976.114.5.909.

Abstract

In 4 unsedated, exercising dogs, we studied the effects of inhaled histamine aerosol on minute volume of ventilation, respiratory frequency, tidal volume, total pulmonary resistance, and dynamic pulmonary compliance. Inhalation (5 breaths) of 1 to 2 per cent histamine aerosols increased minute ventilation (mean, 50 per cent; p less than 0.001) by increasing respiratory frequency (mean, 166 percent; P less than 0.001), despite decreasing tidal volume (mean, 42 percent; P less than 0.0001). Total pulmonary resistance increased (mean, 200 per cent; P less than 0.001.) Breathing supplemental O2 did not affect the ventilatory response to histamine. Adding external resistive loads to a dog's airway did not simulate the pattern of rapid, shallow breathing produced by histamine. Inhalation of terbutaline prevented the changes in total pulmonary resistance and dynamic pulmonary compliance but did not alter the ventilatory response to histamine. When conduction in the cervical vagus nerves (which were implanted chronically in skin loops) was blocked by cooling, the ventilatory response to histamine was abolished. We concluded that histamine stimulates breathing by stimulation of receptors whose afferent pathways are in the vagus nerves; the effective stimulus is not bronchoconstriction but is presumably due to direct stimulation of airway receptors.

摘要

在4只未使用镇静剂且处于运动状态的狗身上,我们研究了吸入组胺气雾剂对每分通气量、呼吸频率、潮气量、总肺阻力和动态肺顺应性的影响。吸入1%至2%的组胺气雾剂(5次呼吸),尽管潮气量减少(平均减少42%;P<0.0001),但通过增加呼吸频率(平均增加166%;P<0.001)使每分通气量增加(平均增加50%;P<0.001)。总肺阻力增加(平均增加200%;P<0.001)。吸入补充氧气并不影响对组胺的通气反应。给狗的气道增加外部阻力负荷并不能模拟组胺产生的快速浅呼吸模式。吸入特布他林可防止总肺阻力和动态肺顺应性的变化,但并不改变对组胺的通气反应。当通过冷却阻断慢性植入皮肤环中的颈迷走神经的传导时,对组胺的通气反应消失。我们得出结论,组胺通过刺激传入途径位于迷走神经中的受体来刺激呼吸;有效的刺激不是支气管收缩,可能是由于直接刺激气道受体所致。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验