基底神经节作用的下游控制--一种进化中保留下来的策略。

IF 4.8 2区 医学 Q1 NEUROSCIENCES
Johanna Frost-Nylén, William Scott Thompson, Brita Robertson, Sten Grillner
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引用次数: 0

摘要

大脑皮层的运动区和基底神经节都有助于决定在任何时刻哪些运动动作将被采用,它们的功能是相互交织的。在这里,我们回顾了中脑和脑干运动中枢下游控制行为选择的基底节机制,并表明前脑运动系统的基本组织在整个脊椎动物系统发育过程中是进化保守的。基底节的输出层(如黑质网状旁)具有 GABA 能神经元,这些神经元在静止时自发活跃,并抑制一些特定的运动中枢,如果抑制性输出神经元本身受到抑制,则每个运动中枢都可以解除抑制。大脑皮层的运动区部分通过背外侧纹状体(putamen)发挥作用,该纹状体有前肢、后肢、躯干等特定模块。每个模块依次通过控制基底节输出模块的两种纹状体投射神经元运行,从而控制下游的运动中枢。本文回顾了纹状体的横向抑制机制以及纹状体促进动作选择的其他机制。运动皮层也会对特定的运动中枢产生直接的兴奋作用。综述了基底神经节对不同中脑/脑干运动中枢的控制,以及通过丘脑反馈到纹状体和大脑皮层的信息的效应复制,这对规划未来的运动非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Basal Ganglia Downstream Control of Action - An Evolutionarily Conserved Strategy.

The motor areas of the cortex and the basal ganglia both contribute to determining which motor actions will be recruited at any moment in time, and their functions are intertwined. Here, we review the basal ganglia mechanisms underlying the selection of behavior of the downstream control of motor centers in the midbrain and brainstem and show that the basic organization of the forebrain motor system is evolutionarily conserved throughout vertebrate phylogeny. The output level of the basal ganglia (e.g. substantia nigra pars reticulata) has GABAergic neurons that are spontaneously active at rest and inhibit a number of specific motor centers, each of which can be relieved from inhibition if the inhibitory output neurons themselves become inhibited. The motor areas of the cortex act partially via the dorsolateral striatum (putamen), which has specific modules for the forelimb, hindlimb, trunk, etc. Each module operates in turn through the two types of striatal projection neurons that control the output modules of the basal ganglia and thereby the downstream motor centers. The mechanisms for lateral inhibition in the striatum are reviewed as well as other striatal mechanisms contributing to action selection. The motor cortex also exerts a direct excitatory action on specific motor centers. An overview is given of the basal ganglia control exerted on the different midbrain/brainstem motor centers, and the efference copy information fed back via the thalamus to the striatum and cortex, which is of importance for the planning of future movements.

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来源期刊
Current Neuropharmacology
Current Neuropharmacology 医学-神经科学
CiteScore
8.70
自引率
1.90%
发文量
369
审稿时长
>12 weeks
期刊介绍: Current Neuropharmacology aims to provide current, comprehensive/mini reviews and guest edited issues of all areas of neuropharmacology and related matters of neuroscience. The reviews cover the fields of molecular, cellular, and systems/behavioural aspects of neuropharmacology and neuroscience. The journal serves as a comprehensive, multidisciplinary expert forum for neuropharmacologists and neuroscientists.
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