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猫的上颈段吸气神经元与膈运动神经元之间的兴奋性连接。

Excitatory connections between upper cervical inspiratory neurons and phrenic motoneurons in cats.

作者信息

Nakazono Y, Aoki M

机构信息

Department of Physiology, School of Medicine, Sapporo Medical University, Japan.

出版信息

J Appl Physiol (1985). 1994 Aug;77(2):679-83. doi: 10.1152/jappl.1994.77.2.679.

Abstract

This study aimed to determine whether upper cervical inspiratory neurons (UCINs), which are localized in the intermediolateral part of the gray matter of the upper cervical segments, have propriospinal connections to phrenic motoneurons of the ipsilateral lower cervical segment in anesthetized cats. Unit action potentials of UCINs were extracellularly recorded simultaneously with ipsilateral phrenic nerve activity. To eliminate the descending influences from medullary respiratory neurons to phrenic motoneurons, bulbospinal conduction paths were temporarily blocked by focal cooling applied to the ventral caudal medulla at the pyramidal decussation level by means of a cooling thermode (1 mm tip diam). By using a spike-triggered method, during cooling phrenic nerve activities were evoked by UCIN spikes that were elicited by microinjection of L-glutamate for 20 of the 55 (36%) UCIN units examined. The onset latencies of these phrenic motoneuron responses ranged from 1.5 to 7.1 ms (mean 3.6 ms), depending on synaptic transmission delays. These results clearly demonstrate that UCINs have, at least in part, excitatory mono- and paucisynaptic connections with ipsilateral phrenic motoneurons.

摘要

本研究旨在确定位于颈上段灰质中间外侧部的颈上段吸气神经元(UCINs)在麻醉猫中是否与同侧颈下段的膈运动神经元存在脊髓 propriospinal 连接。同时在细胞外记录 UCINs 的单位动作电位和同侧膈神经活动。为消除延髓呼吸神经元对膈运动神经元的下行影响,通过冷却热电极(尖端直径 1 毫米)在锥体交叉水平对尾侧延髓腹侧进行局部冷却,暂时阻断延髓脊髓传导通路。通过使用触发脉冲方法,在冷却期间,对 55 个被检查的 UCIN 单位中的 20 个(36%)进行 L - 谷氨酸微注射诱发 UCIN 放电,进而诱发膈神经活动。这些膈运动神经元反应的起始潜伏期为 1.5 至 7.1 毫秒(平均 3.6 毫秒),这取决于突触传递延迟。这些结果清楚地表明,UCINs 至少部分地与同侧膈运动神经元存在兴奋性单突触和少突触连接。

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