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人类杏仁核和海马体的神经元活动增强了情绪记忆的编码。

Neuronal activity in the human amygdala and hippocampus enhances emotional memory encoding.

机构信息

Department of Psychiatry, Icahn School of Medicine at Mount Sinai, New York, NY, USA.

Surgical Neurology Branch, NINDS, National Institutes of Health, Bethesda, MD, USA.

出版信息

Nat Hum Behav. 2023 May;7(5):754-764. doi: 10.1038/s41562-022-01502-8. Epub 2023 Jan 16.

Abstract

Emotional events comprise our strongest and most valuable memories. Here we examined how the brain prioritizes emotional information for storage using direct brain recording and deep brain stimulation. First, 148 participants undergoing intracranial electroencephalographic (iEEG) recording performed an episodic memory task. Participants were most successful at remembering emotionally arousing stimuli. High-frequency activity (HFA), a correlate of neuronal spiking activity, increased in both the hippocampus and the amygdala when participants successfully encoded emotional stimuli. Next, in a subset of participants (N = 19), we show that applying high-frequency electrical stimulation to the hippocampus selectively diminished memory for emotional stimuli and specifically decreased HFA. Finally, we show that individuals with depression (N = 19) also exhibit diminished emotion-mediated memory and HFA. By demonstrating how direct stimulation and symptoms of depression unlink HFA, emotion and memory, we show the causal and translational potential of neural activity in the amygdalohippocampal circuit for prioritizing emotionally arousing memories.

摘要

情绪事件构成了我们最强烈、最有价值的记忆。在这里,我们使用直接脑记录和深部脑刺激来研究大脑如何优先存储情绪信息。首先,148 名接受颅内脑电图 (iEEG) 记录的参与者进行了情景记忆任务。参与者最成功地记住了情绪激动的刺激。当参与者成功地对情绪刺激进行编码时,海马体和杏仁核中的高频活动 (HFA) 增加,神经元放电活动的相关物。接下来,在一组参与者(N=19)中,我们表明,向海马体施加高频电刺激会选择性地降低对情绪刺激的记忆,并且特别降低 HFA。最后,我们表明,抑郁症患者(N=19)也表现出情绪介导记忆和 HFA 的减少。通过证明直接刺激和抑郁症状如何使 HFA、情绪和记忆脱钩,我们展示了杏仁核海马回路中的神经活动在优先处理情绪唤起记忆方面的因果和转化潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9d6/11243592/c769dd637efd/nihms-2006524-f0001.jpg

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