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Alpha and gamma oscillations characterize feedback and feedforward processing in monkey visual cortex

机译:阿尔法和伽马振荡表征猴子视觉皮层的反馈和前馈处理

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摘要

Cognitive functions rely on the coordinated activity of neurons in many brain regions, but the interactions between cortical areas are not yet well understood. Here we investigated whether low-frequency (α) and high-frequency (γ) oscillations characterize different directions of information flow in monkey visual cortex. We recorded from all layers of the primary visual cortex (V1) and found that γ-waves are initiated in input layer 4 and propagate to the deep and superficial layers of cortex, whereas α-waves propagate in the opposite direction. Simultaneous recordings from V1 and downstream area V4 confirmed that γ- and α-waves propagate in the feedforward and feedback direction, respectively. Microstimulation in V1 elicited γ-oscillations in V4, whereas microstimulation in V4 elicited α-oscillations in V1, thus providing causal evidence for the opposite propagation of these rhythms. Furthermore, blocking NMDA receptors, thought to be involved in feedback processing, suppressed α while boosting γ. These results provide new insights into the relation between brain rhythms and cognition
机译:认知功能依赖于许多大脑区域中神经元的协调活动,但皮质区域之间的相互作用尚不十分清楚。在这里,我们研究了低频(α)和高频(γ)振荡是否表征了猴子视觉皮层中信息流的不同方向。我们记录了初级视觉皮层(V1)的所有层,发现γ波在输入层4中引发并传播到皮质的深层和浅层,而α波则沿相反的方向传播。来自V1和下游区域V4的同时记录证实,γ波和α波分别沿前馈和反馈方向传播。 V1中的微刺激引起V4中的γ振荡,而V4中的微刺激引起V1中的α振荡,因此为这些节律的相反传播提供了因果证据。此外,被认为与反馈过程有关的阻断NMDA受体在增加γ的同时抑制了α。这些结果为脑节律与认知之间的关系提供了新的见解。

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