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Short- and Long-Term Effects of Cholinergic Modulation on Gamma Oscillations and Response Synchronization in the Visual Cortex

机译:胆碱能调节对视觉皮层中γ射线和反应同步的短期和长期影响

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摘要

Neurons can engage in synchronized oscillatory activity in the gamma-frequency range when responding to sensory stimuli. Both the oscillatory patterning and the synchronization of responses are enhanced with arousal and attention or when the electroencephalogram is activated by electrical stimulation of the mesencephalic reticular formation. Here we show with intracortical application of cholinergic antagonists that the enhancement of gamma oscillations and response synchronization is mediated by acetylcholine and muscarinic receptors. We demonstrate further that coapplication of cholinergic agonists with synchrony-inducing light stimuli causes a lasting increase in the probability that the stimulated cells engage in gamma oscillations and response synchronization. These changes develop slowly over tens of minutes and then persist for many hours. Thus, cholinergic modulation plays a crucial role both in the fast, state-dependent facilitation of gamma oscillations and response synchronization and in use-dependent long-term modifications of cortical dynamics that favor synchronization of responses in the gamma-frequency range.
机译:当对感觉刺激作出反应时,神经元可以在伽马频率范围内参与同步的振荡活动。唤醒和注意,或者当通过脑电刺激中脑网状结构激活脑电图时,振荡模式和响应同步都会增强。在这里,我们显示胆碱能拮抗剂的皮层内应用表明,伽马振荡和反应同步性的增强是由乙酰胆碱和毒蕈碱受体介导的。我们进一步证明,胆碱能激动剂与同步诱导光刺激的共同应用会导致受刺激细胞参与伽马振荡和响应同步的可能性的持续增加。这些变化会在数十分钟内缓慢发展,然后持续许多小时。因此,胆碱能调制在快速,状态依赖的伽马振荡促进和响应同步以及皮质使用的长期依赖于皮质的动力学的长期修改中都起着至关重要的作用,这种长期变化有利于在伽马频率范围内响应的同步。

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