首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Dynamic Cross-frequency Couplings Of Local Field Potential Oscillations In Rat Striatum And Hippocampus During Performance Of A T-maze Task
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Dynamic Cross-frequency Couplings Of Local Field Potential Oscillations In Rat Striatum And Hippocampus During Performance Of A T-maze Task

机译:T迷宫任务执行过程中大鼠纹状体和海马局部场电位振荡的动态交叉频率耦合

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Oscillatory rhythms in different frequency ranges mark different behavioral states and are thought to provide distinct temporal windows that coherently bind cooperating neuronal assemblies. However, the rhythms in different bands can also interact with each other, suggesting the possibility of higher-order representations of brain states by such rhythmic activity. To explore this possibility, we analyzed local field potential oscillations recorded simultaneously from the striatum and the hippocampus. As rats performed a task requiring active navigation and decision making, the amplitudes of multiple high-frequency oscillations were dynamically modulated in task-dependent patterns by the phase of cooccurring theta-band oscillations both within and across these structures, particularly during decision-making behavioral epochs. Moreover, the modulation patterns uncovered distinctions among both high- and low-frequency subbands. Cross-frequency coupling of multiple neuronal rhythms could be a general mechanism used by the brain to perform network-level dynamical computations underlying voluntary behavior.
机译:不同频率范围内的振荡节律标志着不同的行为状态,并被认为提供了与合作的神经元组件紧密结合的独特的时间窗。但是,不同频段的节奏也可以相互影响,这表明通过这种节奏活动可以更高级地表示大脑状态。为了探索这种可能性,我们分析了从纹状体和海马同时记录的局部场电势振荡。当大鼠执行需要主动导航和决策的任务时,多个高频振荡的幅度会通过与任务相关的模式在这些结构之内和之间同时发生θ带振荡的相位而以与任务有关的模式进行动态调制,尤其是在决策行为过程中时代。此外,调制模式揭示了高频和低频子带之间的区别。多个神经元节律的跨频耦合可能是大脑用来执行基于网络行为的网络行为的通用机制。

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