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清醒犬平静呼吸时迷走神经对呼吸肌活动的影响。

Vagal contributions to respiratory muscle activity during eupnea in the awake dog.

作者信息

Ainsworth D M, Smith C A, Johnson B D, Eicker S W, Henderson K S, Dempsey J A

机构信息

John Rankin Laboratory of Pulmonary Medicine, Department of Preventive Medicine, School of Medicine, University of Wisconsin, Madison 53705.

出版信息

J Appl Physiol (1985). 1992 Apr;72(4):1355-61. doi: 10.1152/jappl.1992.72.4.1355.

Abstract

We examined the effects of reversible vagal cooling on respiratory muscle activities in awake chronically instrumented tracheotomized dogs. We specifically analyzed electromyographic (EMG) activity and its ventilatory correlates, end-expiratory lung volume (EELV) and diaphragmatic resting length via sonomicrometry. Elimination of phasic and tonic mechanoreceptor activity by vagal cooling doubled the EMG activity of the costal, crural, and parasternal muscles, with activation occurring sooner relative to the onset of inspiratory flow. Diaphragmatic postinspiration inspiratory activity in the intact dog coincided with a brief mechanical shortening of the diaphragm during early expiration; vagal blockade removed both the electrical activity and the mechanical shortening. Vagal blockade also doubled the EMG activity of a rib cage expiratory muscle, the triangularis sterni, but reduced that of an abdominal expiratory muscle, the transversus abdominis. Within-breath electrical activity of both muscles occurred sooner relative to the onset of expiratory flow during vagal blockade. Vagal cooling was also associated with a 12% increase in EELV and a 5% decrease in end-expiratory resting length of the diaphragm. We conclude that vagal input significantly modulates inspiratory and expiratory muscle activities, which help regulate EELV efficiently and optimize diaphragmatic length during eupneic breathing in the awake dog.

摘要

我们研究了可逆性迷走神经冷却对清醒的、长期植入仪器的气管切开犬呼吸肌活动的影响。我们通过超声测量法,特别分析了肌电图(EMG)活动及其通气相关性、呼气末肺容积(EELV)和膈肌静息长度。迷走神经冷却消除相位性和紧张性机械感受器活动后,肋骨、膈脚和胸骨旁肌肉的EMG活动增加了一倍,且相对于吸气气流开始,激活出现得更早。完整犬的膈肌吸气后吸气活动与呼气早期膈肌的短暂机械性缩短同时发生;迷走神经阻断消除了电活动和机械性缩短。迷走神经阻断还使胸廓呼气肌胸骨三角肌的EMG活动增加了一倍,但使腹部呼气肌腹横肌的EMG活动减少。在迷走神经阻断期间,相对于呼气气流开始,这两块肌肉的呼吸内电活动出现得更早。迷走神经冷却还与EELV增加12%和膈肌呼气末静息长度减少5%有关。我们得出结论,迷走神经输入显著调节吸气和呼气肌活动,这有助于在清醒犬的平静呼吸过程中有效调节EELV并优化膈肌长度。

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