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喉传入神经对呼气性延髓脊髓神经元和运动神经元的影响。

Influences from laryngeal afferents on expiratory bulbospinal neurons and motoneurons.

作者信息

Jodkowski J S, Berger A J

机构信息

Department of Physiology and Biophysics, University of Washington School of Medicine, Seattle 98195.

出版信息

J Appl Physiol (1985). 1988 Apr;64(4):1337-45. doi: 10.1152/jappl.1988.64.4.1337.

Abstract

The purpose of this study is to analyze the reflex effects of laryngeal afferent activation on respiratory patterns in anesthetized, vagotomized, paralyzed, ventilated cats. We recorded simultaneously from the phrenic nerve, T10 internal intercostal nerve, and single bulbospinal expiratory neurons of the caudal ventral respiratory group (VRG). Laryngeal afferents were activated by electrical stimulation of the superior laryngeal nerve (SLN) or by cold-water infusion into the larynx. Both types of stimuli caused inhibition of phrenic activity and facilitation of internal intercostal nerve activity, indicating expiratory effort. The activity of 46 bulbospinal expiratory cells was depressed during SLN electrical stimulation, and 13 of them were completely inhibited. In 44 of 56 neurons tested, mean firing frequency (FFmean) was decreased in response to cold-water infusion and 8 others responded with increased FFmean; in the remaining 4 neurons, FFmean was unchanged. Possible reasons for different neuronal responses to SLN electrical stimulation and water infusion are discussed. We conclude that bulbospinal expiratory neurons of VRG were not the source of the reflex motoneuronal expiratory-like activity produced by SLN stimulation. Other, not yet identified inputs to spinal expiratory motoneurons are activated during this experimental condition.

摘要

本研究的目的是分析在麻醉、迷走神经切断、麻痹、机械通气的猫中,喉传入神经激活对呼吸模式的反射效应。我们同时记录膈神经、T10肋间内神经以及尾侧腹侧呼吸组(VRG)的单球脊髓呼气神经元的活动。通过电刺激喉上神经(SLN)或向喉内注入冷水来激活喉传入神经。这两种刺激均导致膈神经活动受到抑制,肋间内神经活动增强,提示呼气动作。在SLN电刺激期间,46个球脊髓呼气细胞的活动受到抑制,其中13个完全被抑制。在56个受试神经元中,44个神经元的平均放电频率(FFmean)在注入冷水后降低,另外8个神经元的FFmean增加;其余4个神经元的FFmean无变化。讨论了神经元对SLN电刺激和注水反应不同的可能原因。我们得出结论,VRG的球脊髓呼气神经元不是SLN刺激产生的反射性运动神经元呼气样活动的来源。在此实验条件下,脊髓呼气运动神经元的其他尚未确定的输入被激活。

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