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猫延髓中心血管迷走神经机制的整合

Integration of the cardiovagal mechanism in the medulla oblongata of the cat.

作者信息

Chen H I, Chai C Y

出版信息

Am J Physiol. 1976 Aug;231(2):454-61. doi: 10.1152/ajplegacy.1976.231.2.454.

Abstract

The central cardiovagal mechanism of the medulla oblongata was explored by stimulation and ablation techniques in the anesthetized cat. Insertion of an electrode into the nucleus solitarius (NS) occassionally evoked slight and transient bradycardia, but similar mechanical irritation to the nucleus ambiguus (NA) usually evoked prolonged and intense bradycardia. Electrical stimulation of the dorsal motor nucleus of the vagus (DNV) produced no or little bradycardia. Stimulation of NS and NA consistently produced cardiac slowing with a latency of less than 2 s and the effect was more prominent in the NA. Contralateral vagotomy did not significantly affect the bradycardia on the NS and NA stimulation but ipsilateral vagotomy caused a complete abolition. Lesions of the NA or DNV largely or completely abolished the bradycardia consequent to NS stimulation. Extensive destruction of the NS and/or DNV did not affect the bradycardia resulting from NA stimulation. Destruction of the ventral midline area partially reduced th bradycardia on NS STIMULATION BY 36-54%. The results suggest that the sequence of the three vagal nuclei for cardiac inhibition runs in the following order: NS, DNV, and NA. Synaptic connections are probably scanty in the DNV. Part of the vagal pathway passes through the ventral midline area before it reaches the NA. A scheme of the neural pathway for reflex bradycardia of vagal origin has been proposed.

摘要

通过对麻醉猫采用刺激和切除技术,对延髓的中枢心迷走神经机制进行了探索。将电极插入孤束核(NS)偶尔会诱发轻微且短暂的心动过缓,但对疑核(NA)进行类似的机械刺激通常会诱发持久且强烈的心动过缓。刺激迷走神经背运动核(DNV)未产生或仅产生轻微的心动过缓。刺激NS和NA始终会导致心脏减慢,潜伏期小于2秒,且在NA中这种效应更为显著。对侧迷走神经切断术对NS和NA刺激所导致的心动过缓无显著影响,但同侧迷走神经切断术可使其完全消失。NA或DNV的损伤可在很大程度上或完全消除NS刺激所导致的心动过缓。广泛破坏NS和/或DNV并不影响NA刺激所导致的心动过缓。破坏腹侧中线区域可使NS刺激所导致的心动过缓部分降低36% - 54%。结果表明,三个迷走神经核在心脏抑制方面的顺序如下:NS、DNV和NA。DNV中的突触连接可能很少。部分迷走神经通路在到达NA之前穿过腹侧中线区域。已提出了迷走神经起源的反射性心动过缓的神经通路示意图。

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