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Fear conditioning-related changes in cerebellar Purkinje cell activities in goldfish

机译:恐惧调节与金鱼小脑浦肯野细胞活动有关的变化

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Background Fear conditioning-induced changes in cerebellar Purkinje cell responses to a conditioned stimulus have been reported in rabbits. It has been suggested that synaptic long-term potentiation and the resulting increases in firing rates of Purkinje cells are related to the acquisition of conditioned fear in mammals. However, Purkinje cell activities during acquisition of conditioned fear have not been analysed, and changes in Purkinje cell activities throughout the development of conditioned fear have not yet been investigated. In the present study, we tracked Purkinje cell activities throughout a fear conditioning procedure and aimed to elucidate further how cerebellar circuits function during the acquisition and expression of conditioned fear. Methods Activities of single Purkinje cells in the corpus cerebelli were tracked throughout a classical fear conditioning procedure in goldfish. A delayed conditioning paradigm was used with cardiac deceleration as the conditioned response. Conditioning-related changes of Purkinje cell responses to a conditioned stimulus and unconditioned stimulus were examined. Results The majority of Purkinje cells sampled responded to the conditioned stimulus by either increasing or decreasing their firing rates before training. Although there were various types of conditioning-related changes in Purkinje cells, more than half of the cells showed suppressed activities in response to the conditioned stimulus after acquisition of conditioned fear. Purkinje cells that showed unconditioned stimulus-coupled complex-spike firings also exhibited conditioning-related suppression of simple-spike responses to the conditioned stimulus. A small number of Purkinje cells showed increased excitatory responses in the acquisition sessions. We found that the magnitudes of changes in the firing frequencies of some Purkinje cells in response to the conditioned stimulus correlated with the magnitudes of the conditioned responses on a trial-to-trial basis. Conclusions These results demonstrate that Purkinje cells in the corpus cerebelli of goldfish show fear conditioning-related changes in response to a stimulus that had been emotionally neutral prior to conditioning. Unconditioned stimulus-induced climbing fibre inputs to the Purkinje cells may be involved in mediating these plastic changes.
机译:背景技术在兔子中已经报道了恐惧调节引起的小脑浦肯野细胞对条件刺激的反应变化。已经提出,突触的长期增强作用和浦肯野细胞激发速率的增加与哺乳动物中条件性恐惧的获得有关。然而,尚未分析获得条件性恐惧期间的浦肯野细胞活性,并且尚未研究整个条件性恐惧发生过程中浦肯野细胞活性的变化。在本研究中,我们跟踪了整个恐惧调节过程中的浦肯野细胞活动,旨在进一步阐明小脑回路在获得和表达条件恐惧过程中的功能。方法在整个金鱼的经典恐惧调节过程中,跟踪小脑中单个Purkinje细胞的活动。延迟条件范式与心脏减速一起用作条件响应。检查了浦肯野细胞对条件刺激和非条件刺激的条件相关变化。结果采样的大多数浦肯野细胞对条件刺激的反应是通过增加或降低训练前的放电率。尽管浦肯野细胞存在各种与条件相关的变化,但获得条件性恐惧后,超过一半的细胞显示出对条件性刺激的抑制活性。表现出无条件的刺激耦合的复杂尖峰放电的浦肯野细胞还表现出与条件相关的对简单刺激对条件刺激的抑制作用。少数浦肯野细胞在采集过程中表现出增加的兴奋性反应。我们发现,在试验到试验的基础上,某些浦肯野细胞响应条件刺激的放电频率的变化幅度与条件响应的幅度相关。结论这些结果表明,金鱼小脑小体中的Purkinje细胞表现出与恐惧条件相关的变化,这是对条件条件刺激之前情绪中性的刺激做出反应的结果。无条件的刺激诱导的浦肯野细胞的爬升纤维输入可能参与介导这些可塑性变化。

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