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在大鼠通过管道运动期间,运动引起的海马θ节律与视觉信息无关。

Locomotion-induced hippocampal theta is independent of visual information in rats during movement through a pipe.

机构信息

Institute of Brain Science, National Yang-Ming University, Taipei 11221, Taiwan.

出版信息

Behav Brain Res. 2011 Jan 20;216(2):699-704. doi: 10.1016/j.bbr.2010.09.021. Epub 2010 Oct 1.

Abstract

Behavioural correlates of the hippocampal theta rhythm have been suggested to include voluntary motor behaviours and spatial learning. The involvement of visual information during these processes is still undetermined. Therefore, our aim was to clarify the contribution of locomotion and visual information to the generation of hippocampal theta during locomotion. Forty-one Wistar-Kyoto male rats (8-9 weeks old) were separated into active or passive movement groups that travelled through a pipe, which was either lit or unlit. Animals were implanted with a bipolar electrode in the hippocampus for local field potential recording. Head and leg movements were recorded by accelerometer and leg electromyogram, respectively, and stress levels were assessed by heart rate measurement. Theta power (4-12 Hz) was divided into medium theta (MT, 6-10 Hz) and low theta (LT, 4-6 Hz) power. There was a significant effect of locomotion (p<0.001, two-way ANOVA) on theta power, MT power, and theta mean power frequency. Visual information, however, had no significant effect, nor did the interaction between locomotion and visual information. The lack of visual information effect could not be explained by differences in movement patterns or stress levels, because these two measures did not differ between the lit and unlit conditions. Our results indicate that visual information is not essential for locomotion-induced hippocampal theta, implying that theta oscillation during spatial learning does not reflect sensory processing of visual information.

摘要

行为相关性的海马θ节律被认为包括自愿运动行为和空间学习。在这些过程中视觉信息的参与仍然不确定。因此,我们的目的是阐明运动和视觉信息对运动过程中海马θ产生的贡献。41 只 Wistar-Kyoto 雄性大鼠(8-9 周龄)分为主动或被动运动组,通过一个管道,管道要么点亮要么不点亮。动物被植入海马体中的双极电极进行局部场电位记录。头部和腿部运动分别通过加速度计和腿部肌电图记录,心率测量评估应激水平。θ功率(4-12 Hz)分为中θ(MT,6-10 Hz)和低θ(LT,4-6 Hz)功率。运动(p<0.001,双向方差分析)对θ功率、MT 功率和θ平均功率频率有显著影响。然而,视觉信息没有显著影响,运动和视觉信息之间也没有相互作用。由于这两个措施在点亮和不点亮条件之间没有差异,因此视觉信息缺乏影响不能用运动模式或应激水平的差异来解释。我们的结果表明,视觉信息对于运动诱导的海马θ不是必需的,这意味着空间学习过程中的θ振荡不反映视觉信息的感觉处理。

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