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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Cross-frequency phase-phase coupling between theta and gamma oscillations in the hippocampus.
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Cross-frequency phase-phase coupling between theta and gamma oscillations in the hippocampus.

机译:海马中θ和γ振荡之间的跨频相位-相位耦合。

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摘要

Neuronal oscillations allow for temporal segmentation of neuronal spikes. Interdependent oscillators can integrate multiple layers of information. We examined phase-phase coupling of theta and gamma oscillators in the CA1 region of rat hippocampus during maze exploration and rapid eye movement sleep. Hippocampal theta waves were asymmetric, and estimation of the spatial position of the animal was improved by identifying the waveform-based phase of spiking, compared to traditional methods used for phase estimation. Using the waveform-based theta phase, three distinct gamma bands were identified: slow gamma(S) (gamma(S); 30-50 Hz), midfrequency gamma(M) (gamma(M); 50-90 Hz), and fast gamma(F) (gamma(F); 90-150 Hz or epsilon band). The amplitude of each sub-band was modulated by the theta phase. In addition, we found reliable phase-phase coupling between theta and both gamma(S) and gamma(M) but not gamma(F) oscillators. We suggest that cross-frequency phase coupling can support multiple time-scale control of neuronal spikes within and across structures.
机译:神经元振荡允许神经元尖峰的时间分段。相互依赖的振荡器可以集成多层信息。我们检查了迷宫探索和快速眼动睡眠过程中大鼠海马CA1区中θ和γ振荡器的相位-相位耦合。与用于相位估计的传统方法相比,海马θ波不对称,并且通过识别基于波形的尖峰相位,动物的空间位置估计得到了改善。使用基于波形的θ相位,确定了三个不同的伽玛波段:慢伽玛(S)(伽玛(S); 30-50 Hz),中频伽玛(M)(伽玛(M); 50-90 Hz)和快速伽玛(F)(伽玛(F); 90-150 Hz或epsilon频段)。每个子带的幅度由θ相位调制。此外,我们发现theta与gamma(S)和gamma(M)振荡器之间没有可靠的相位耦合。我们建议跨频相位耦合可以支持结构内和结构间神经元尖峰的多个时间尺度控制。

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