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在轮式跑动中,海马体 4Hz 振荡出现,并对中隔核失活有抗性。

Hippocampal 4-Hz oscillations emerge during stationary running in a wheel and are resistant to medial septum inactivation.

机构信息

Bioinformatics Multidisciplinary Environment (BioME), Federal University of Rio Grande do Norte, Natal, RN, Brazil.

Department of Physical Education, Federal University of Rio Grande do Norte, Natal, RN, Brazil.

出版信息

PLoS One. 2023 Apr 19;18(4):e0284514. doi: 10.1371/journal.pone.0284514. eCollection 2023.

Abstract

Recent studies described 2-4 Hz oscillations in the hippocampus of rats performing stationary locomotion on treadmills and other apparatus. Since the 2-4 Hz rhythm shares common features with theta (5-12 Hz) oscillations-such as a positive amplitude-running speed relationship and modulation of spiking activity-many have questioned whether these rhythms are related or independently generated. Here, we analyzed local field potentials and spiking activity from the dorsal CA1 of rats executing a spatial alternation task and running for ~15 s in a wheel during the intertrial intervals both before and after muscimol injection into the medial septum. We observed remarkable 4-Hz oscillations during wheel runs, which presented amplitude positively correlated with running speed. Surprisingly, the amplitude of 4-Hz and theta oscillations were inversely related. Medial septum inactivation abolished hippocampal theta but preserved 4-Hz oscillations. It also affected the entrainment of pyramidal cells and interneurons by 4-Hz rhythmic activity. In all, these results dissociate the underlying mechanism of 4-Hz and theta oscillations in the rat hippocampus.

摘要

最近的研究描述了在跑步机和其他设备上进行固定运动的大鼠海马体中的 2-4 Hz 振荡。由于 2-4 Hz 节律与 theta(5-12 Hz)振荡具有共同的特征 - 例如正振幅-运行速度关系和尖峰活动的调制 - 许多人质疑这些节律是否相关或独立产生。在这里,我们分析了执行空间交替任务的大鼠背侧 CA1 的局部场电位和尖峰活动,并在 medial septum 注射 muscimol 前后在轮子上运行约 15 秒。我们观察到轮子运行期间出现显著的 4-Hz 振荡,其振幅与运行速度呈正相关。令人惊讶的是,4-Hz 和 theta 振荡的幅度呈反比关系。内侧隔核失活消除了海马体 theta,但保留了 4-Hz 振荡。它还影响了 4-Hz 节律活动对锥体神经元和中间神经元的同步。总之,这些结果分离了大鼠海马体中 4-Hz 和 theta 振荡的潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/429d/10115258/eefd43c93e83/pone.0284514.g001.jpg

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