首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Amygdala neurons mediate acquisition but not maintenance of instrumental avoidance behavior in rabbits.
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Amygdala neurons mediate acquisition but not maintenance of instrumental avoidance behavior in rabbits.

机译:杏仁核神经元介导获得性,但不能维持兔子的仪器回避行为。

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Whereas the amygdala is generally understood to be involved in aversively motivated learning, the specific associative function of the amygdala remains controversial. This study addressed the amygdalar role in mediation of discriminative instrumental avoidance learning of rabbits. Bilateral microinjection of the GABA receptor agonist muscimol centered in the basolateral nucleus of the amygdala was given to inactivate amygdalar neurons at each of three stages of acquisition. The absence of behavioral learning in rabbits trained immediately after amygdalar inactivation confirmed previous results with electrolytic lesions. The absence of savings during training after muscimol had become ineffective indicated an amygdalar role in the establishment of acquisition-relevant neural plasticity, not simply in the expression of the learned response. A time-limited role of the amygdala in instrumental avoidance learning was indicated by the finding that intra-amygdalar muscimol failed to disrupt performance of the well-established avoidance response. The passage of time alone (with no training trials) was sufficient to reduce amygdalar involvement in response performance. These results and demonstrations that other limbic system areas make time-limited contributions to learning indicate that the amygdala is part of a larger intermediate memory system that supports learning and performance before habit consolidation.
机译:尽管杏仁核通常被理解为参与了反感动机的学习,但是杏仁核的特定联想功能仍然存在争议。这项研究解决了杏仁核在歧视性仪器回避学习中的作用。在采集的三个阶段中的每一个阶段,均以双侧显微注射以杏仁核基底外侧核为中心的GABA受体激动剂麝香酚灭活杏仁核神经元。杏仁核失活后立即训练的兔子缺乏行为学习,证实了先前有电解损伤的结果。 muscimol无效后训练期间没有节省,这表明杏仁核在建立与获得相关的神经可塑性中的作用,而不仅仅是在学习到的反应的表达中。杏仁核内麝香酚未能破坏已建立的回避反应的表现,表明杏仁核在仪器回避学习中具有时限性作用。单独的时间流逝(无训练试验)足以减少杏仁核对反应表现的影响。这些结果和其他边缘系统区域对学习做出时间限制的证明表明,杏仁核是较大的中间记忆系统的一部分,该系统在习惯合并之前支持学习和表现。

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