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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The Basolateral Amygdala is critical for learning about neutral stimuli in the presence of danger, and the perirhinal cortex is critical in the absence of danger
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The Basolateral Amygdala is critical for learning about neutral stimuli in the presence of danger, and the perirhinal cortex is critical in the absence of danger

机译:基底外侧杏仁核对于在有危险的情况下学习中性刺激至关重要,而在没有危险的情况下,腹膜皮质至关重要

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摘要

The perirhinal cortex (PRh) and basolateral amygdala (BLA) appear to mediate distinct aspects of learning and memory. Here, we used rats to investigate the involvement of the PRh and BLA in acquisition and extinction of associations between two different environmental stimuli (e.g., a tone and a light) in higher-order conditioning. When both stimuli were neutral, infusion of the GABAA, muscimol, or the NMDA receptor (NMDAR) antagonist ifenprodil into the PRh impaired associative formation. However, when one stimulus was neutral and the other was a learned danger signal, acquisition and extinction of the association between them was unaffected by manipulations targeting the PRh. Temporary inactivation of the BLA had the opposite effect: formation and extinction of an association between two stimuli was spared when both stimuli were neutral, but impaired when one stimulus was a learned danger signal. Subsequent experiments showed that the experience of fear per se shifts processing of an association between neutral stimuli from thePRhto the BLA.When training was conducted in a dangerous environment, formation and extinction of an association between neutral stimuli was impaired by BLAinactivation orNMDARblockade in this region, but was unaffected byPRhinactivation. These double dissociations in the roles of the PRh and BLA in learning under different stimulus and environmental conditions imply that fear-induced activation of the amygdala changes how the brain processes sensory stimuli. Harmless stimuli are treated as potentially harmful, resulting in a shift from cortical to subcortical processing in the BLA.
机译:周围神经皮层(PRh)和基底外侧杏仁核(BLA)似乎介导学习和记忆的不同方面。在这里,我们用大鼠调查了PRh和BLA在高阶条件下两个不同环境刺激(例如,声调和光)之间的关联的获取和消亡中的参与。当两种刺激均是中性时,向PRh中输注GABAA,麝香酚或NMDA受体(NMDAR)拮抗剂艾芬地尔会损害缔合形成。但是,当一种刺激是中性的,而另一种是学习到的危险信号时,针对PRh的操作不会影响它们之间关联的获取和消亡。 BLA的暂时失活具有相反的效果:两个刺激之间都是中性时,两个刺激之间的关联的形成和消亡被避免,但是当一个刺激是一个已知的危险信号时则被削弱。随后的实验表明,恐惧的体验本身将中性刺激之间的联系从PRh转移到了BLA。在危险环境中进行训练时,该区域的BLA失活或NMDAR阻滞削弱了中性刺激之间的联系的形成和消亡,但不受PRhinactivation的影响。 PRh和BLA在不同刺激和环境条件下的学习中的双重解离暗示着恐惧诱发的杏仁核激活改变了大脑处理感觉刺激的方式。无害刺激被视为潜在有害物质,导致BLA中从皮层加工向皮层下加工的转变。

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