小鼠运动和社交行为的小脑通路的汇聚与发散

IF 2.7 3区 医学 Q3 NEUROSCIENCES
Cerebellum Pub Date : 2024-10-01 Epub Date: 2024-05-23 DOI:10.1007/s12311-024-01706-w
Meike E van der Heijden
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引用次数: 0

摘要

临床和临床前研究的证据表明,小脑有助于认知功能,包括社交行为。既然小脑在更多行为中的作用已得到证实,那么问题来了,小脑是否通过与调节运动相同的机制来促进社交行为。本综述试图回答小脑是否通过相同的途径引导运动和社会行为。研究重点是以特定细胞类型的方式操纵小脑细胞、突触或基因,然后测试其对社交和运动行为的影响。这些研究表明,解剖学上的限制性操作和整个小脑皮层的操作都可能导致社交障碍,而不会导致运动控制异常,反之亦然。这些研究表明,小脑在社交和运动行为方面采用了不同的细胞、突触和分子途径。未来的研究值得关注小脑对多种神经功能做出贡献的不同机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Converging and Diverging Cerebellar Pathways for Motor and Social Behaviors in Mice.

Converging and Diverging Cerebellar Pathways for Motor and Social Behaviors in Mice.

Evidence from clinical and preclinical studies has shown that the cerebellum contributes to cognitive functions, including social behaviors. Now that the cerebellum's role in a wider range of behaviors has been confirmed, the question arises whether the cerebellum contributes to social behaviors via the same mechanisms with which it modulates movements. This review seeks to answer whether the cerebellum guides motor and social behaviors through identical pathways. It focuses on studies in which cerebellar cells, synapses, or genes are manipulated in a cell-type specific manner followed by testing of the effects on social and motor behaviors. These studies show that both anatomically restricted and cerebellar cortex-wide manipulations can lead to social impairments without abnormal motor control, and vice versa. These studies suggest that the cerebellum employs different cellular, synaptic, and molecular pathways for social and motor behaviors. Future studies warrant a focus on the diverging mechanisms by which the cerebellum contributes to a wide range of neural functions.

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来源期刊
Cerebellum
Cerebellum 医学-神经科学
CiteScore
6.40
自引率
14.30%
发文量
150
审稿时长
4-8 weeks
期刊介绍: Official publication of the Society for Research on the Cerebellum devoted to genetics of cerebellar ataxias, role of cerebellum in motor control and cognitive function, and amid an ageing population, diseases associated with cerebellar dysfunction. The Cerebellum is a central source for the latest developments in fundamental neurosciences including molecular and cellular biology; behavioural neurosciences and neurochemistry; genetics; fundamental and clinical neurophysiology; neurology and neuropathology; cognition and neuroimaging. The Cerebellum benefits neuroscientists in molecular and cellular biology; neurophysiologists; researchers in neurotransmission; neurologists; radiologists; paediatricians; neuropsychologists; students of neurology and psychiatry and others.
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