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中脑颈核对视中隔起搏器θ节律的调节。

Regulation of the septal pacemaker theta rhythm by the cervical nuclei of the midbrain.

作者信息

Kichigina V F, Gordeeva T A

机构信息

Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences, Pushchino.

出版信息

Neurosci Behav Physiol. 1996 Nov-Dec;26(6):516-25. doi: 10.1007/BF02359493.

Abstract

Neuronal activity in the medial septal region (the medial nucleus and the diagonal band nucleus, MN-DBN) was recorded along with hippocampal EEG traces in conscious rabbits with stimulatory electrodes implanted in the median cervical nucleus (MCN) and the reticular formation (RF) of the midbrain and pons. In all animals with electrodes in the MCN, the background theta activity frequency was low (4.6 +/- 0.15 Hz) as compared with intact rabbits or those with electrodes implanted only in the RF (5.2 +/- 0.19 Hz, p < 0.5). Stimulation of the MCN with weak low-frequency impulses reduced theta volleys from MN-DBN cells, reducing their frequency and regularity and inducing the appearance or strengthening of low-frequency delta modulation. The number of spikes in a volley decreased, and the duration of inter-volley intervals increased. Stimulation of the MCN led to a gradual decrease in the frequency and amplitude of theta waves, induced irregular delta waves and spindles of 12 Hz in the hippocampal EEG. Stimulation of the RF produced the opposite changes in volley activity in the MN-DBN and hippocampal EEG, with increases in theta and decreases in delta components. These results support a role for the midbrain cervical nuclei as structures limiting the generation of theta activity by the reticular-septal system, but do not support the existence of an MN-DBN-independent high-frequency serotoninergic theta rhythm. It is proposed that the effect of the MCN may be important for suppression and switching of attention.

摘要

在清醒的兔子中,将刺激电极植入中脑和脑桥的正中颈核(MCN)和网状结构(RF),同时记录内侧隔区(内侧核和斜角带核,MN-DBN)的神经元活动以及海马脑电图。在所有电极植入MCN的动物中,与完整兔子或仅电极植入RF的兔子相比,背景θ活动频率较低(4.6±0.15Hz)(5.2±0.19Hz,p<0.5)。用弱低频脉冲刺激MCN可减少MN-DBN细胞的θ波群,降低其频率和规律性,并诱导低频δ调制的出现或增强。波群中的尖峰数量减少,波群间间隔的持续时间增加。刺激MCN导致海马脑电图中θ波的频率和幅度逐渐降低,诱导出不规则的δ波和12Hz的纺锤波。刺激RF在MN-DBN和海马脑电图的波群活动中产生相反的变化,θ波增加而δ波成分减少。这些结果支持中脑颈核作为限制网状-隔区系统产生θ活动的结构的作用,但不支持存在独立于MN-DBN的高频5-羟色胺能θ节律。有人提出,MCN的作用可能对注意力的抑制和转换很重要。

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