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刺激迷走神经C纤维会改变猫呼吸运动输出的时间和分布。

Stimulation of vagal C-fibers alters timing and distribution of respiratory motor output in cats.

作者信息

Holmes H R, Remmers J E

机构信息

Department of Internal Medicine and Medical Physiology, University of Calgary, Alberta, Canada.

出版信息

J Appl Physiol (1985). 1989 Dec;67(6):2249-56. doi: 10.1152/jappl.1989.67.6.2249.

DOI:10.1152/jappl.1989.67.6.2249
PMID:2606830
Abstract

Pulmonary vascular congestion or pulmonary embolism in humans produces shallow tachypnea, and indirect experimental evidence suggests that this characteristic breathing pattern may result from activation of vagal unmyelinated afferents from the lung. We have investigated, in decerebrate cats, reflex changes in breathing pattern and in the activation of the diaphragm, posterior cricoarytenoid, and thyroarytenoid muscles caused by activating C-fiber afferents in the vagus nerve. The right vagus nerve was sectioned distal to the origin of the recurrent laryngeal nerve, eliminating vagal afferent traffic although preserving motor innervation of the larynx on that side. The left cervical vagus was stimulated electrically, and efferent activation of the laryngeal muscles was avoided by cutting the left recurrent laryngeal nerve. Transmission to the brain of vagal afferent traffic resulting from this stimulation was controlled by graded cold block of the nerve cranial to the site of application of the stimulus. Activation of C-fibers, when A-fibers were blocked, significantly decreased respiratory period and amplitude of diaphragm inspiratory burst. In addition, this selective activation of vagal C-fibers augmented postinspiratory activity of the diaphragm and recruited phasic expiratory bursts in the thyroarytenoid. We conclude that, in unanesthetized decerebrate cats, afferent traffic of vagal C-fibers initiates a pontomedullary reflex that increases respiratory frequency, decreases tidal volume, and augments braking of expiratory airflow.

摘要

人类的肺血管充血或肺栓塞会导致呼吸浅快,间接实验证据表明这种特征性呼吸模式可能源于肺迷走神经无髓鞘传入纤维的激活。我们在去大脑猫身上研究了迷走神经中C纤维传入纤维激活引起的呼吸模式变化以及膈肌、环杓后肌和甲杓肌激活的反射变化。右侧迷走神经在喉返神经起始部远端切断,消除了迷走神经传入冲动,尽管保留了该侧喉部的运动神经支配。电刺激左侧颈迷走神经,并通过切断左侧喉返神经避免喉肌的传出激活。由这种刺激产生的迷走神经传入冲动向脑内的传导通过在刺激部位近端对神经进行分级冷阻滞来控制。当A纤维被阻断时,C纤维的激活显著缩短呼吸周期并降低膈肌吸气爆发的幅度。此外,迷走神经C纤维的这种选择性激活增强了膈肌的吸气后活动,并在甲杓肌中引发了阶段性呼气爆发。我们得出结论,在未麻醉的去大脑猫中,迷走神经C纤维的传入冲动引发了一种脑桥延髓反射,该反射增加呼吸频率、减小潮气量并增强呼气气流的制动。

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