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Within-session dynamics of theta–gamma coupling and high-frequency oscillations during spatial alternation in rat hippocampal area CA1

机译:大鼠海马区CA1空间交替过程中θ-γ耦合的会话内动力学和高频振荡

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摘要

Theta–gamma coupling in the hippocampus is thought to be involved in cognitive processes. A large body of research establishes that the hippocampus plays a crucial role in the organization and maintenance of episodic memory, and that sharp-wave ripples (SWR) contribute to memory consolidation processes. Here, we investigated how the local field potentials in the hippocampal CA1 area adapted along with rats’ behavioral changes within a session during a spatial alternation task that included a 1-s fixation and a 1.5-s delay. We observed that, as the session progressed, the duration from fixation onset to nose-poking in the choice hole reduced as well as the number of premature responses during the delay. Parallel with the behavioral transitions, the power of high gamma during the delay period increased whereas that of low gamma decreased later in the session. Furthermore, the strength of theta–gamma modulation later in the session showed significant increase as compared to earlier in the session. Examining SWR during the reward period, we found that the number of SWR events decreased as well as the power in a wide frequency range during SWR events. In addition, the correlation between SWR and gamma oscillations just before SWR events was higher in the earlier trials than in the later trials. Our findings support the notion that the inputs from CA3 and entorhinal cortex play a critical role in memory consolidation as well as in cognitive processes. We suggest that SWR and the inputs from the two areas serve to stabilize the task behavior and neural activities.
机译:海马中的θ-γ耦合被认为与认知过程有关。大量研究表明,海马在情节性记忆的组织和维持中起着至关重要的作用,而尖波波纹(SWR)有助于记忆整合过程。在这里,我们研究了在空间交替任务(包括1-s固定和1.5-s延迟)过程中,海马CA1区的局部场电势如何与大鼠的行为变化相适应。我们观察到,随着会话的进行,从固定开始到选择孔中鼻子戳的持续时间减少,并且延迟期间的过早响应次数也减少了。与行为转换平行,在延迟时段内,高伽马的能力增加,而在会话后期,低伽马的能力降低。此外,与会议早期相比,会议后期的θ-伽马调制强度显着提高。在奖励期间检查SWR,我们发现SWR事件期间SWR事件的数量以及功率在很宽的频率范围内都下降了。另外,在较早的试验中,就在较早的试验中,就在较早的试验中,SWR和伽马振荡之间的相关性更高。我们的发现支持以下观点:CA3和内嗅皮层的输入在记忆巩固以及认知过程中起着关键作用。我们建议SWR和来自两个领域的输入有助于稳定任务行为和神经活动。

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