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Theta 相位同步在人类海马体和前额叶皮层在编码意外信息时增加:一个案例研究。

Theta Phase Synchronization between the Human Hippocampus and Prefrontal Cortex Increases during Encoding of Unexpected Information: A Case Study.

机构信息

Cardiff University.

University of California, Davis.

出版信息

J Cogn Neurosci. 2018 Nov;30(11):1646-1656. doi: 10.1162/jocn_a_01302. Epub 2018 Jun 28.

Abstract

Events that violate predictions are thought to not only modulate activity within the hippocampus and PFC but also enhance communication between the two regions. Scalp and intracranial EEG studies have shown that oscillations in the theta frequency band are enhanced during processing of contextually unexpected information. Some theories suggest that the hippocampus and PFC interact during processing of unexpected events, and it is possible that theta oscillations may mediate these interactions. Here, we had the rare opportunity to conduct simultaneous electrophysiological recordings from the human hippocampus and PFC from two patients undergoing presurgical evaluation for pharmacoresistant epilepsy. Recordings were conducted during a task that involved encoding of contextually expected and unexpected visual stimuli. Across both patients, hippocampal-prefrontal theta phase synchronization was significantly higher during encoding of contextually unexpected study items, relative to contextually expected study items. Furthermore, the hippocampal-prefrontal theta phase synchronization was larger for contextually unexpected items that were later remembered compared with later forgotten items. Moreover, we did not find increased theta synchronization between the PFC and rhinal cortex, suggesting that the observed effects were specific to prefrontal-hippocampal interactions. Our findings are consistent with the idea that theta oscillations orchestrate communication between the hippocampus and PFC in support of enhanced encoding of contextually deviant information.

摘要

被认为违反预测的事件不仅会调节海马体和前额叶皮层内的活动,还会增强这两个区域之间的通讯。头皮和颅内 EEG 研究表明,在处理上下文意外信息时,theta 频带的振荡会增强。一些理论表明,海马体和前额叶皮层在处理意外事件时相互作用,并且 theta 振荡可能介导这些相互作用。在这里,我们有幸从两名正在接受耐药性癫痫药物治疗评估的患者中同时进行人类海马体和前额叶皮层的电生理记录。记录是在一项涉及对上下文预期和意外视觉刺激进行编码的任务中进行的。在两名患者中,海马体-前额叶 theta 相位同步在编码上下文意外的学习项目时明显高于编码上下文预期的学习项目。此外,与后来遗忘的项目相比,后来记住的上下文意外项目的海马体-前额叶 theta 相位同步更大。此外,我们没有发现前额叶皮层和梨状皮层之间的 theta 同步增加,这表明观察到的效应是特定于前额叶-海马体相互作用的。我们的发现与这样一种观点一致,即 theta 振荡协调海马体和前额叶皮层之间的通讯,以支持对上下文异常信息的增强编码。

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