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Activity of rabbit neocortex and hippocampus neurons in orientational-investigative behavior and freezing

机译:兔新皮层和海马神经元在定向研究行为和冻结中的活性

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Autocorrelation histograms were used to study the nature of spike activity in neurons recorded bilaterally from the visual and parietal areas of the cortex and hippocampal field CA1 in rabbits in free behavior during exposure to emotionally significant stimuli. Active movement orientational-investigative reactions to stimuli were associated with grouping of discharges and periodicity in the spike activity of most neurons in the cortex and hippocampus, this being dominated by the θ frequency (predominantly 4–5 Hz in the cortex and 4–5 and 6–7 Hz in the hippocampus). As compared with active movement reactions, freezing in response to stimulation was associated with increased numbers of neurons with uniform discharge distributions, while the spike activity of neurons with discharge periodicity showed increases in the intensity of the δ frequency (predominantly from 2 to 4 Hz), while θ intensity decreased. The number of neurons with periodic frequency in the δ range was greater in freezing than in the baseline state of calmly sitting rabbits.
机译:自相关直方图用于研究在暴露于情绪重要刺激下自由行为的家兔的视皮层和顶叶区域以及海马区CA1的视觉和顶叶区双侧记录的神经元的突波活动性质。对刺激的主动运动定向调查反应与皮质和海马中大多数神经元的突波活动的放电分组和周期性相关,这主要由θ频率(主要在皮质中为4-5 Hz,在皮质中为4-5和海马6–7 Hz)。与主动运动反应相比,响应刺激的冻结与放电分布均匀的神经元数量增加有关,而放电周期性的神经元的尖峰活动显示出δ频率的强度增加(主要是从2到4 Hz) ,而θ强度降低。在冻结状态下,周期性频率在δ范围内的神经元数量要多于平静状态下兔子的基线状态。

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