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小脑连接组

The cerebellar connectome.

作者信息

Boonstra Jackson Tyler

机构信息

Department of Human Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam 1081 BT, The Netherlands; Department of Neurology, Amsterdam University Medical Centers, Amsterdam Neuroscience, University of Amsterdam, Amsterdam 1105 AZ, The Netherlands.

出版信息

Behav Brain Res. 2025 Mar 28;482:115457. doi: 10.1016/j.bbr.2025.115457. Epub 2025 Jan 28.

Abstract

The cerebellum, once primarily associated with motor functions, has emerged as a critical component in higher cognitive processes and emotional regulation. This paradigm shift frames the cerebellum as an essential focal point for elucidating sophisticated functional brain circuitry. Network neuroscience often maintains a cortical-centric viewpoint, potentially overlooking the significant contributions of the cerebellum in connectome organization. Enhanced recognition and integration of cerebellar aspects in connectomic analyses hold significant potential for elucidating cerebellar circuitry within comprehensive brain networks and in neuropsychiatric conditions where cerebellar involvement is evident. This review explores the intricate anatomy, connectivity, and functional organization of the cerebellum within the broader context of large-scale brain networks. Cerebellar-specific networks are examined, emphasizing their role in supporting diverse cognitive functions via the cerebellum's hierarchical functional organization. The clinical significance of cerebellar connectomics is then addressed, highlighting the interplay between cerebellar circuitry and neurological and psychiatric conditions. The paper concludes by considering neurostimulation treatments and future directions in the field. This comprehensive review underscores the cerebellum's integral role in the human connectome.

摘要

小脑曾主要被认为与运动功能相关,如今已成为高级认知过程和情绪调节中的关键组成部分。这一范式转变将小脑视为阐明复杂功能性脑回路的重要焦点。网络神经科学常常秉持以皮层为中心的观点,这可能会忽视小脑在连接组组织中的重要贡献。在连接组分析中增强对小脑方面的认识和整合,对于阐明综合脑网络中的小脑回路以及在小脑明显受累的神经精神疾病中具有巨大潜力。本综述在大规模脑网络的更广泛背景下探讨了小脑复杂的解剖结构、连接性和功能组织。研究了小脑特异性网络,强调了它们通过小脑的分层功能组织在支持多种认知功能方面的作用。接着阐述了小脑连接组学的临床意义,突出了小脑回路与神经和精神疾病之间的相互作用。本文最后考虑了神经刺激治疗及该领域的未来方向。这一全面综述强调了小脑在人类连接组中的不可或缺的作用。

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