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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Potential Mechanisms Underlying Intercortical Signal Regulation via Cholinergic Neuromodulators
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Potential Mechanisms Underlying Intercortical Signal Regulation via Cholinergic Neuromodulators

机译:通过胆碱能神经调节剂调节皮质间信号的潜在机制。

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摘要

The dynamical behavior of the cortex is extremely complex, with different areas and even different layers of a cortical column displaying different temporal patterns. A major open question is how the signals from different layers and different brain regions are coordinated in a flexible manner to support function. Here, we considered interactions between primary auditory cortex and adjacent association cortex. Using a biophysically based model, we show how top-down signals in the beta and gamma regimes can interact with a bottom-up gamma rhythm to provide regulation of signals between the cortical areas and among layers. The flow of signals depends on cholinergic modulation: with only glutamatergic drive, we show that top-down gamma rhythms may block sensory signals. In the presence of cholinergic drive, top-down beta rhythms can lift this blockade and allow signals to flow reciprocally between primary sensory and parietal cortex.
机译:皮质的动力学行为极其复杂,皮质柱的不同区域甚至不同层显示不同的时间模式。一个主要的开放性问题是如何灵活地协调来自不同层和不同大脑区域的信号以支持功能。在这里,我们考虑了主听皮层和相邻的联想皮层之间的相互作用。使用基于生物物理的模型,我们展示了beta和gamma方案中的自上而下的信号如何与自下而上的gamma节奏相互作用,以调节皮质区域之间和层之间的信号。信号流取决于胆碱能调节:只有谷氨酸能驱动,我们证明自上而下的伽马节律可能会阻断感觉信号。在存在胆碱能驱动的情况下,自上而下的β节律可以解除这种阻塞,并使信号在初级感觉和顶叶皮层之间相互流动。

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