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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >CO-OSCILLATION AND SYNCHRONIZATION BETWEEN THE POSTERIOR THALAMUS AND THE CAUDATE NUCLEUS DURING VISUAL STIMULATION
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CO-OSCILLATION AND SYNCHRONIZATION BETWEEN THE POSTERIOR THALAMUS AND THE CAUDATE NUCLEUS DURING VISUAL STIMULATION

机译:视觉刺激期间后丘脑和尾状核之间的共振荡和同步

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Recent results suggest significant cross-correlation between the spike trains of the suprageniculate nucleus (SG) of the posterior thalamus and the caudate nucleus (CN) during visual stimulation. In the present study visually evoked local field potentials (LFPs) were recorded simultaneously in the CN and the SG in order to investigate the coupling between these structures at a population level. The effect of static and dynamic visual stimulation was analyzed in 55 SG-CN LFP pairs in the frequency range 5-57 Hz. Statistical analysis revealed significant correlation of the relative powers of each investigated frequency band (5-8 Hz, 8-12 Hz, 12-35 Hz and 35-57 Hz) during both static and dynamic visual stimulation. The temporal evolution of cross-correlation showed that in the majority of the cases the SG was activated first, and in approximately one third of the cases, the CN was activated earlier. These observations suggest a bidirectional information flow. The most interesting finding of this study is that different frequency bands exhibited significant cross-correlation in a stimulation paradigm-dependent manner. That is, static stimulation usually increased the cross-correlation of the higher frequency components (12-57 Hz) of the LFP, while dynamic stimulation induced changes in the lowest frequency band (5-8 Hz). This suggests a parallel processing of dynamic and static visual information in the SG and the CN. To our knowledge we are the first to provide evidence on the co-oscillation and synchronization of the CN and the SG at a population level upon visual stimulation, which suggests a significant cooperation between these structures in visual information processing.
机译:最近的结果表明,在视觉刺激过程中,丘脑后部超微粒子核(SG)的尖峰序列与尾状核(CN)之间存在明显的互相关。在本研究中,在CN和SG中同时记录了视觉诱发的局部场电位(LFP),以研究人口水平上这些结构之间的耦合。在55 SG-CN LFP对中,在5-57 Hz频率范围内分析了静态和动态视觉刺激的效果。统计分析表明,在静态和动态视觉刺激过程中,每个调查频段(5-8 Hz,8-12 Hz,12-35 Hz和35-57 Hz)的相对功率均具有显着相关性。互相关的时间演变表明,在大多数情况下,SG首先被激活,而在大约三分之一的情况下,CN被更早地激活。这些观察结果表明双向信息流。这项研究最有趣的发现是,不同的频带以依赖于刺激范式的方式表现出明显的互相关。也就是说,静态刺激通常会增加LFP的较高频率分量(12-57 Hz)的互相关性,而动态刺激会引起最低频段(5-8 Hz)的变化。这建议在SG和CN中并行处理动态和静态视觉信息。据我们所知,我们是第一个在视觉刺激后在种群水平上提供CN和SG协同振荡和同步的证据,这表明这些结构在视觉信息处理中有着重要的合作。

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