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双人探戈:背侧直接和间接通路对运动学习和行为灵活性的协调作用。

It takes two to tango: Dorsal direct and indirect pathways orchestration of motor learning and behavioral flexibility.

机构信息

Laboratory of Neurophysiology, Université libre de Bruxelles, ULB Neuroscience Institute ULB-UNI, Brussels, Belgium.

Laboratory of Neurophysiology, Université libre de Bruxelles, ULB Neuroscience Institute ULB-UNI, Brussels, Belgium.

出版信息

Neurochem Int. 2019 Mar;124:200-214. doi: 10.1016/j.neuint.2019.01.009. Epub 2019 Jan 16.

Abstract

The striatum as the main entry nucleus of the basal ganglia is long known to be critical for motor control. It integrates information from multiple cortical areas, thalamic and midbrain nuclei to refine and control motion. By tackling this incredible variety of input signals, increasing evidences showed a pivotal role, particularly of the dorsal striatum, in executive functions. The complexity of the dorsal striatum (DS) in its compartmentalization and in the nature and origin of its afferent connections, makes it a critical hub controlling dynamics of motor learning and behavioral or cognitive flexibility. The present review summarizes findings from recent studies that utilize optogenetics with complementary technologies including electrophysiology, activity imaging and tracing methods in rodents to elucidate the functioning and role of discrete regions and specific pathways of the DS in behavioral flexibility, with an emphasis on the processes leading to initial action sequence or serial order learning and reversal learning.

摘要

纹状体作为基底神经节的主要入口核,长期以来一直被认为对运动控制至关重要。它整合来自多个皮质区域、丘脑和中脑核的信息,以完善和控制运动。通过处理这种令人难以置信的多样化输入信号,越来越多的证据表明,背侧纹状体在执行功能中起着关键作用。背侧纹状体(DS)在其分区以及传入连接的性质和来源方面的复杂性,使其成为控制运动学习和行为或认知灵活性动态的关键枢纽。本综述总结了最近的研究结果,这些研究利用光遗传学与互补技术相结合,包括电生理学、活动成像和在啮齿动物中的追踪方法,以阐明 DS 的离散区域和特定通路在行为灵活性中的功能和作用,重点是导致初始动作序列或序列学习和反转学习的过程。

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