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Relation between hippocampal gamma waves and behavioral disturbances induced by phencyclidine and methamphetamine.

机译:海马γ波与苯环利定和甲基苯丙胺引起的行为障碍之间的关系。

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摘要

The relationship between hippocampal electrical activity and behavioral hyperactivity induced by either phencyclidine (PCP) or methamphetamine (MAP) was examined in freely behaving rats. The EEGs at the hippocampal CA1 region were simultaneously recorded with the animal's behavior for 2 h after administration of either PCP or MAP. PCP (10 mg/kg, intraperitoneal (i.p.)) significantly increased locomotor activity including rearing, walking, head-weaving and circling. Spectral analysis of the EEG showed that hippocampal gamma waves (30-70 Hz), but not other frequency bands, were significantly increased from 5 to 120 min after systemic injection of PCP. Inactivation of the medial septum with muscimol, a gamma-aminobutyric acid receptor A agonist, 15 min prior to injection of PCP, suppressed both hippocampal gamma waves and locomotor activity. MAP (1.5 mg/kg, i.p.) also increased locomotor activity for longer than 2 h. During the behavioral hyperactivity induced by MAP, hippocampal EEG showed θ and gamma rhythms that were not significantly different from those during walking before MAP. However, MAP-induced behavioral activity was suppressed by pre-injection of muscimol in the medial septum, which also decreased hippocampal gamma activity. It is suggested that the medial septum plays a role in mediating behavioral disturbances induced by both PCP and MAP through control of the hippocampal electrical activity, and that hippocampal gamma waves may play a permissible role in the expression of behaviors.
机译:在行为自由的大鼠中检查了海马神经电活动与苯环利定(PCP)或甲基苯丙胺(MAP)诱导的行为亢进之间的关系。给予PCP或MAP后2 h,同时记录海马CA1区的EEG与动物行为。五氯苯酚(10毫克/千克,腹膜内(腹腔))可显着提高运动能力,包括抚养,散步,编织头和盘旋。脑电图的频谱分析表明,全身注射五氯苯酚后5至120分钟,海马伽马波(30-70 Hz)显着增加,但其他频带没有明显增加。在注射PCP之前15分钟,使用muscimol(一种γ-氨基丁酸受体A激动剂)使内侧中隔失活,从而抑制了海马γ波和运动能力。 MAP(1.5 mg / kg,i.p.)也能增加运动能力超过2小时。在MAP引起的行为亢进期间,海马EEG的θ和γ节律与MAP之前的步行过程无明显差异。但是,通过在内侧隔垫中预先注射麝香酚可抑制MAP诱导的行为活性,这也会降低海马的γ活性。提示中隔膜可通过控制海马电活动来介导PCP和MAP引起的行为障碍,海马伽马波可能在行为表达中发挥作用。

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