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情感小脑

The emotional cerebellum.

作者信息

Strata Piergiorgio

机构信息

Department of Neuroscience, University of Turin and National Institute of Neuroscience, 10125, Turin, Italy.

出版信息

Cerebellum. 2015 Oct;14(5):570-7. doi: 10.1007/s12311-015-0649-9.

Abstract

Great attention has been given so far to cerebellar control of posture and of skilled movements despite the well-demonstrated interconnections between the cerebellum and the autonomic nervous system. Here is a review of the link between these two structures and a report on the recently acquired evidence for its involvement in the world of emotions. In rodents, the reversible inactivation of the vermis during the consolidation or the reconsolidation period hampers the retention of the fear memory trace. In this region, there is a long-term potentiation of both the excitatory synapses between the parallel fibres and the Purkinje cells and of the feed-forward inhibition mediated by molecular layer interneurons. This concomitant potentiation ensures the temporal fidelity of the system. Additional contacts between mossy fibre terminals and Golgi cells provide morphological evidence of the potentiation of another feed-forward inhibition in the granular layer. Imaging experiments show that also in humans the cerebellum is activated during mental recall of emotional personal episodes and during learning of a conditioned or unconditioned association involving emotions. The vermis participates in fear learning and memory mechanisms related to the expression of autonomic and motor responses of emotions. In humans, the cerebellar hemispheres are also involved at a higher emotional level. The importance of these findings is evident when considering the cerebellar malfunctioning in psychiatric diseases like autism and schizophrenia which are characterized behaviourally by emotion processing impairments.

摘要

尽管小脑与自主神经系统之间的相互联系已得到充分证实,但迄今为止,人们对小脑在姿势和熟练运动控制方面给予了极大关注。本文综述了这两个结构之间的联系,并报告了最近获得的关于其参与情感世界的证据。在啮齿动物中,在巩固期或重新巩固期对蚓部进行可逆性失活会阻碍恐惧记忆痕迹的保留。在该区域,平行纤维与浦肯野细胞之间的兴奋性突触以及分子层中间神经元介导的前馈抑制都存在长期增强。这种同时发生的增强确保了系统的时间保真度。苔藓纤维终末与高尔基细胞之间的额外接触为颗粒层中另一种前馈抑制的增强提供了形态学证据。成像实验表明,在人类中,当对情感性个人事件进行心理回忆以及学习涉及情感的条件或非条件关联时,小脑也会被激活。蚓部参与与情感的自主和运动反应表达相关的恐惧学习和记忆机制。在人类中,小脑半球在更高的情感层面也发挥作用。当考虑到自闭症和精神分裂症等精神疾病中的小脑功能障碍时,这些发现的重要性就显而易见了,这些疾病在行为上的特征是情感处理受损。

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