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Simultaneous Recordings from the Primary Visual Cortex and Lateral Geniculate Nucleus Reveal Rhythmic Interactions and a Cortical Source for Gamma-Band Oscillations

机译:从主要视觉皮层和外侧细齿状核的同时记录揭示了节律性相互作用和γ波段振荡的皮层来源。

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摘要

Oscillatory synchronization of neuronal activity has been proposed as a mechanism to modulate effective connectivity between interacting neuronal populations. In the visual system, oscillations in the gamma-frequency range (30–100 Hz) are thought to subserve corticocortical communication. To test whether a similar mechanism might influence subcortical-cortical communication, we recorded local field potential activity from retinotopically aligned regions in the lateral geniculate nucleus (LGN) and primary visual cortex (V1) of alert macaque monkeys viewing stimuli known to produce strong cortical gamma-band oscillations. As predicted, we found robust gamma-band power in V1. In contrast, visual stimulation did not evoke gamma-band activity in the LGN. Interestingly, an analysis of oscillatory phase synchronization of LGN and V1 activity identified synchronization in the alpha (8–14 Hz) and beta (15–30 Hz) frequency bands. Further analysis of directed connectivity revealed that alpha-band interactions mediated corticogeniculate feedback processing, whereas beta-band interactions mediated geniculocortical feedforward processing. These results demonstrate that although the LGN and V1 display functional interactions in the lower frequency bands, gamma-band activity in the alert monkey is largely an emergent property of cortex.
机译:已经提出了神经元活动的振荡同步作为调节相互作用的神经元群体之间的有效连通性的机制。在视觉系统中,伽马频率范围(30–100 Hz)中的振荡被认为有助于皮层皮质通信。为了测试类似的机制是否会影响皮层下皮质的交流,我们记录了警惕猕猴的外侧膝状核(LGN)和初级视皮层(V1)视黄斑的视场刺激后产生的局部场潜在活动,这些刺激物已知会产生强烈的皮层γ带振荡。如预测的那样,我们在V1中发现了强大的伽马频带功率。相反,视觉刺激并未引起LGN中的伽马带活动。有趣的是,对LGN和V1活动的振荡相位同步进行的分析确定了在alpha(8-14 Hz)和beta(15-30 Hz)频带中的同步。定向连通性的进一步分析表明,α波段相互作用介导了成皮质的反馈处理,而β波段相互作用介导了成皮质的前馈处理。这些结果表明,尽管LGN和V1在较低的频段上显示功能相互作用,但机敏猴子中的γ频段活动在很大程度上是皮质的新兴特性。

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