Zhuo M, Gebhart G F
Department of Pharmacology, College of Medicine, University of Iowa, Iowa City, IA 52242 U.S.A.
Pain. 1990 Sep;42(3):337-350. doi: 10.1016/0304-3959(90)91147-B.
Descending influences on the spinal nociceptive tail-flick (TF) reflex produced by focal electrical stimulation and glutamate microinjection in the nuclei reticularis gigantocellularis (NGC) and gigantocellularis pars alpha (NGC alpha) were examined and characterized in rats lightly anesthetized with pentobarbital. Both inhibition and facilitation of the TF reflex were produced by electrical stimulation at identical sites in the NGC/NGC alpha; glutamate microinjection only inhibited the TF reflex. The chronaxie of stimulation for inhibition of the TF reflex was 169 +/- 28 microseconds. Inhibition of the TF reflex by stimulation was produced throughout the NGC and NGC alpha; intensities of stimulation for inhibition were least in the ventral NGC and in the NGC alpha. At threshold intensities of stimulation, inhibition of the TF reflex did not outlast the period of stimulation. Facilitation of the TF reflex was produced at many of the same sites at which stimulation inhibited the TF reflex, but always at lesser intensities of stimulation (mean, 10 microA vs. 43 microA for inhibition, n = 25). Stimulation in the NGC/NGC alpha at threshold intensities for facilitation or inhibition of the TF reflex did not significantly affect blood pressure. Strength-duration characterization of electrical stimulation and microinjection of glutamate into identical sites in the NGC and NGC alpha suggest that descending inhibition of the TF reflex results from activation of cell bodies in the NGC and NGC alpha.
在戊巴比妥轻度麻醉的大鼠中,研究并描述了网状巨细胞核(NGC)和巨细胞α部(NGCα)局部电刺激和谷氨酸微量注射对脊髓伤害性甩尾(TF)反射的下行影响。在NGC/NGCα的相同部位进行电刺激,既能抑制也能易化TF反射;而谷氨酸微量注射仅能抑制TF反射。抑制TF反射的刺激时值为169±28微秒。在整个NGC和NGCα中,刺激均可抑制TF反射;抑制性刺激强度在腹侧NGC和NGCα中最小。在阈刺激强度下,TF反射的抑制不会超过刺激期。在许多刺激抑制TF反射的相同部位也能产生TF反射的易化,但易化时的刺激强度总是较小(平均而言,易化时为10微安,抑制时为43微安,n = 25)。在NGC/NGCα中,以阈刺激强度进行刺激以易化或抑制TF反射时,对血压无显著影响。对NGC和NGCα相同部位进行电刺激和谷氨酸微量注射的强度-时间特性表明,TF反射的下行抑制是由NGC和NGCα中的细胞体激活所致。