大鼠扁桃体和丘脑恐惧记忆信号的分析

Hyeran Jang, Sumin Chang, Mookyoung Han, K. Baek, Dongil Chung, Jaeseung Jeong
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引用次数: 1

摘要

这项研究的目的是为了了解恐惧记忆是如何在大鼠的电生理信号中编码的。我们记录了大鼠在提取恐惧记忆过程中外侧杏仁核(LA)和内侧膝状核(MGm)的局部场电位(LFPs)。老鼠被训练成在听到巴甫洛夫恐惧条件反射的条件音(CS+)时一动不动。实验选用10只成年大鼠,采用10秒无噪声LFPs进行分析。我们发现在提取恐惧记忆的过程中,左脑区和中脑区神经活动的θ功率谱增加,这与之前的报道相似。恐惧条件反射后,LA和MGm之间的线性功能连通性也有所增加,特别是在CS+呈现期间。此外,近似熵(ApEn)是信号复杂性和不规则性的非线性度量,表明恐惧状态下有更多的信息加工。结果表明,利用电生理信号的线性和非线性特性,可以将恐惧记忆的回忆与大脑的休息状态区分开来。这些恐惧记忆的电生理特性可用于神经工程领域,对神经活动进行修改或解码,以供临床应用
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Analysis of fear memory signals in the rat amygdala and thalamus
The aim of this study was to obtain an insight of how fear memory is encoded in the electrophysiological signals of the rat. We recorded local field potentials (LFPs) of the lateral amygdala (LA) and the medial geniculate nucleus (MGm) in the rat's brain during retrieval of fear memory. The rats were trained to freeze when they hear the conditioned tone (CS+) using Pavlovian fear conditioning. Total 10 adult rats were used for this experiment and 10-second of noise-free LFPs was used for analysis. We found increased theta power spectrum of neural activity in the LA and the MGm during retrieval of fear memory similar with the previous report. The linear functional connectivity between the LA and the MGm also increased after fear conditioning, specifically during CS+ presentation. In addition, approximate entropy (ApEn), a nonlinear measure of complexity and irregularity of signals, indicated that there was more information processing during fear state. These results show that recall of fear memory can be distinguished from the rest state of brain using linear and nonlinear properties of electrophysiological signals. These electrophysiological properties of fear memory would be used in neuro-engineering field to modify or decode the neural activity for clinical application
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