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Cerebellar Circuits for Classical Fear Conditioning

机译:用于经典恐惧条件反射的小脑回路

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摘要

Accumulating evidence indicates that the cerebellum is critically involved in modulating non-motor behaviors, including cognition and emotional processing. Both imaging and lesion studies strongly suggest that the cerebellum is a component of the fear memory network. Given the well-established role of the cerebellum in adaptive prediction of movement and cognition, the cerebellum is likely to be engaged in the prediction of learned threats. The cerebellum is activated by fear learning, and fear learning induces changes at multiple synaptic sites in the cerebellum. Furthermore, recent technological advances have enabled the investigation of causal relationships between intra- and extra-cerebellar circuits and fear-related behaviors such as freezing. Here, we review the literature on the mechanisms underlying the modulation of cerebellar circuits in a mammalian brain by fear conditioning at the cellular and synaptic levels to elucidate the contributions of distinct cerebellar structures to fear learning and memory. This knowledge may facilitate a deeper understanding and development of more effective treatment strategies for fear-related affective disorders including post-traumatic stress or anxiety related disorders.
机译:越来越多的证据表明,小脑在调节非运动行为(包括认知和情绪处理)方面发挥着关键作用。影像学检查和病变研究都强烈表明,小脑是恐惧记忆网络的一个组成部分。鉴于小脑在运动和认知的适应性预测中的作用公认,小脑很可能参与预测习得性威胁。小脑被恐惧学习激活,恐惧学习会引起小脑中多个突触部位的变化。此外,最近的技术进步使研究小脑内和小脑外回路与恐惧相关行为(如冻结)之间的因果关系成为可能。在这里,我们回顾了有关哺乳动物大脑中通过细胞和突触水平的恐惧条件调节调节小脑回路的机制的文献,以阐明不同的小脑结构对恐惧学习和记忆的贡献。这些知识可能有助于更深入地理解和开发针对恐惧相关情感障碍(包括创伤后应激或焦虑相关障碍)的更有效治疗策略。

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