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中缝隐核对猫膈神经活动的电刺激和化学刺激效应

Effect of electrical and chemical stimulation of the raphe obscurus on phrenic nerve activity in the cat.

作者信息

Holtman J R, Anastasi N C, Norman W P, Dretchen K L

出版信息

Brain Res. 1986 Jan 8;362(2):214-20. doi: 10.1016/0006-8993(86)90446-4.

Abstract

The effect of electrical and chemical (L-glutamate) stimulation of the raphe obscurus on phrenic nerve activity was examined in the cat. Phrenic nerve activity was recorded from a C5 nerve root in anesthetized, paralyzed and artificially ventilated cats. Neural discharge was quantitated by integrating the phrenic nerve activity. The respiratory frequency was determined from the integrated nerve signal. Focal electrical stimulation (18-144 microA; 5-40 Hz; 100 microseconds pulse duration) resulted in significant (P less than 0.05) increases in both integrated phrenic nerve (IPN) amplitude and respiratory frequency. These changes were dependent upon current intensity and frequency of stimulation. The largest increases in IPN amplitude and respiratory frequency were 47 +/- 17% and 146 +/- 8%, respectively. To insure that the changes in integrated phrenic nerve activity (IPNA) were the result of stimulation of cell bodies and not axons of passage, L-glutamate (100, 200 nmol) was microinjected (100 nl) into the raphe obscurus. Significant (P less than 0.05) dose-related changes occurred in integrated phrenic nerve amplitude with an increase of 44 +/- 13% at 100 nmol and 80 +/- 13% at 200 nmol L-glutamate. No significant increase in respiratory frequency was observed with L-glutamate microinjection. The results suggest that the raphe obscurus may be involved in respiratory control.

摘要

在猫身上研究了中缝隐核的电刺激和化学(L-谷氨酸)刺激对膈神经活动的影响。在麻醉、麻痹并进行人工通气的猫的C5神经根记录膈神经活动。通过对膈神经活动进行积分来定量神经放电。根据积分后的神经信号确定呼吸频率。局部电刺激(18 - 144微安;5 - 40赫兹;100微秒脉冲持续时间)导致膈神经积分(IPN)幅度和呼吸频率显著(P < 0.05)增加。这些变化取决于电流强度和刺激频率。IPN幅度和呼吸频率的最大增加分别为47±17%和146±8%。为确保膈神经积分活动(IPNA)的变化是刺激细胞体而非过路轴突的结果,将L-谷氨酸(100、200纳摩尔)微量注射(100纳升)到中缝隐核中。膈神经积分幅度出现显著(P < 0.05)的剂量相关变化,在100纳摩尔L-谷氨酸时增加44±13%,在200纳摩尔时增加80±13%。微量注射L-谷氨酸未观察到呼吸频率有显著增加。结果表明中缝隐核可能参与呼吸控制。

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