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小脑恐惧学习的解剖结构:系统荟萃分析。

The anatomy of fear learning in the cerebellum: A systematic meta-analysis.

机构信息

Maastricht University, Department of Psychiatry and Psychology, School of Mental Health and Neuroscience, Maastricht, The Netherlands.

Maastricht University, Department of Psychiatry and Psychology, School of Mental Health and Neuroscience, Maastricht, The Netherlands.

出版信息

Neurosci Biobehav Rev. 2015 Dec;59:83-91. doi: 10.1016/j.neubiorev.2015.09.019. Epub 2015 Oct 9.

Abstract

Recent neuro-imaging studies have implicated the cerebellum in several higher-order functions. Its role in human fear conditioning has, however, received limited attention. The current meta-analysis examines the loci of cerebellar contributions to fear conditioning in healthy subjects, thus mapping, for the first time, the neural response to conditioned aversive stimuli onto the cerebellum. By using the activation likelihood estimation (ALE) technique for analyses, we identified several distinct regions in the cerebellum that activate in response to the presentation of the conditioned stimulus: the cerebellar tonsils, lobules HIV-VI, and the culmen. These regions have separately been implicated in fear acquisition, consolidation of fear memories and expression of conditioned fear responses. Their specific role in these processes may be attributed to the general contribution of cerebellar cortical networks to timing and prediction. Our meta-analysis highlights the potential role of the cerebellum in human cognition and emotion in general, and addresses the possibility how deficits in associative cerebellar learning may play a role in the pathogenesis of anxiety disorders. Future studies are needed to further clarify the mechanistic role of the cerebellum in higher order functions and neuropsychiatric disorders.

摘要

最近的神经影像学研究表明,小脑参与了多种高级功能。然而,小脑在人类恐惧条件反射中的作用却受到了有限的关注。本荟萃分析检查了小脑对健康受试者恐惧条件反射的贡献部位,从而首次将条件性厌恶刺激的神经反应映射到小脑上。通过使用激活似然估计 (ALE) 技术进行分析,我们确定了小脑内几个与呈现条件刺激相关的不同区域:小脑扁桃体、HIV-VI 小叶和蚓部。这些区域分别与恐惧的获得、恐惧记忆的巩固以及条件性恐惧反应的表达有关。它们在这些过程中的特定作用可能归因于小脑皮质网络对时间和预测的一般贡献。我们的荟萃分析强调了小脑在人类认知和情绪中的潜在作用,并探讨了关联性小脑学习缺陷如何在焦虑障碍的发病机制中发挥作用的可能性。未来的研究需要进一步阐明小脑在高级功能和神经精神障碍中的机制作用。

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