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Low-frequency theta oscillations in the human hippocampus during real-world and virtual navigation

机译:真实世界和虚拟导航中人海马的低频theta振荡

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摘要

Low-Frequency Oscillations (LFO) in the range of 7–9 Hz, or theta rhythm, has been recorded in rodents ambulating in the real world. However, intra-hippocampus EEG recordings during virtual navigation in humans have consistently reported LFO that appear to predominate around 3–4 Hz. Here we report clear evidence of 7–9 Hz rhythmicity in raw intra-hippocampus EEG traces during real as well as virtual movement. Oscillations typically occur at a lower frequency in virtual than real world navigation. This study highlights the possibility that human and rodent hippocampal EEG activity are not as different as previously reported and this difference may arise, in part, due to the lack of actual movement in previous human navigation studies, which were virtual.
机译:记录在现实世界中的啮齿动物中,低频振荡(LFO)在7–9 Hz或theta节奏范围内。但是,在人类虚拟导航过程中,海马内EEG记录一直报告LFO似乎在3-4Hz左右占主导地位。在这里,我们报告了在真实和虚拟运动过程中海马内原始EEG痕迹的7–9 Hz节律性的明确证据。在虚拟环境中,振荡频率通常比在现实世界中的导航频率低。这项研究突显了人类和啮齿类动物海马脑电活动没有以前报道的那样的可能性,并且这种差异可能会出现,部分原因是由于先前人类的航海研究缺乏实际的运动,而这是虚拟的。

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