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恐惧条件反射增强了听觉皮层和外侧杏仁核中音调诱发的尖峰序列的不同时间成分。

Fear conditioning enhances different temporal components of tone-evoked spike trains in auditory cortex and lateral amygdala.

作者信息

Quirk G J, Armony J L, LeDoux J E

机构信息

Center for Neural Science, New York University, New York 10003, USA.

出版信息

Neuron. 1997 Sep;19(3):613-24. doi: 10.1016/s0896-6273(00)80375-x.

Abstract

Single neurons were recorded in freely behaving rats during fear conditioning from areas of auditory cortex that project to the lateral nucleus of the amygdala (LA). The latency and rate of conditioning and extinction were analyzed, and the results were compared to previous recordings from LA itself. Auditory cortex neurons took more trials to learn, and they responded more slowly than LA neurons within trials. Short-latency plasticity in LA, therefore, reflects inputs from the auditory thalamus rather than the auditory cortex. Unlike LA cells, some auditory cortex cells showed late conditioned responses that seemed to anticipate the unconditioned stimulus, while others showed extinction-resistant memory storage. Thus, rapid conditioning of fear responses to potentially dangerous stimuli depends on plasticity in the amygdala, while cortical areas may be particularly involved in higher cognitive (mnemonic and attentional) processing of fear experiences.

摘要

在恐惧条件反射过程中,对自由活动大鼠投射到杏仁核外侧核(LA)的听觉皮层区域的单个神经元进行记录。分析了条件反射和消退的潜伏期及速率,并将结果与之前对LA本身的记录进行比较。听觉皮层神经元需要更多的试验来学习,并且在试验中它们的反应比LA神经元更慢。因此,LA中的短潜伏期可塑性反映了来自听觉丘脑而非听觉皮层的输入。与LA细胞不同,一些听觉皮层细胞表现出晚期条件反应,似乎能预测无条件刺激,而另一些则表现出抗消退的记忆存储。因此,对潜在危险刺激的恐惧反应的快速条件反射取决于杏仁核中的可塑性,而皮层区域可能特别参与恐惧体验的更高层次认知(记忆和注意力)处理。

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