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中脑核团 MdV 介导熟练的前肢运动任务。

Brainstem nucleus MdV mediates skilled forelimb motor tasks.

机构信息

1] Biozentrum, Department of Cell Biology, University of Basel, Basel 4056, Switzerland [2] Friedrich Miescher Institute for Biomedical Research, Basel 4058, Switzerland.

出版信息

Nature. 2014 Apr 17;508(7496):351-6. doi: 10.1038/nature13023. Epub 2014 Feb 2.

Abstract

Translating the behavioural output of the nervous system into movement involves interaction between brain and spinal cord. The brainstem provides an essential bridge between the two structures, but circuit-level organization and function of this intermediary system remain poorly understood. Here we use intersectional virus tracing and genetic strategies in mice to reveal a selective synaptic connectivity matrix between brainstem substructures and functionally distinct spinal motor neurons that regulate limb movement. The brainstem nucleus medullary reticular formation ventral part (MdV) stands out as specifically targeting subpopulations of forelimb-innervating motor neurons. Its glutamatergic premotor neurons receive synaptic input from key upper motor centres and are recruited during motor tasks. Selective neuronal ablation or silencing experiments reveal that MdV is critically important specifically for skilled motor behaviour, including accelerating rotarod and single-food-pellet reaching tasks. Our results indicate that distinct premotor brainstem nuclei access spinal subcircuits to mediate task-specific aspects of motor programs.

摘要

将神经系统的行为输出转化为运动涉及大脑和脊髓之间的相互作用。脑干为这两个结构之间提供了一个至关重要的桥梁,但这个中间系统的回路水平组织和功能仍知之甚少。在这里,我们使用小鼠的交差病毒追踪和遗传策略,揭示了脑干亚结构和功能不同的脊髓运动神经元之间选择性突触连接矩阵,这些神经元调节肢体运动。脑干网状结构腹侧部(MdV)作为一个特例,专门针对支配前肢的运动神经元的亚群。其谷氨酸能的前运动神经元接收来自关键上运动中枢的突触输入,并在运动任务中被募集。选择性神经元消融或沉默实验表明,MdV 对熟练运动行为特别重要,包括加速旋转棒和单食物丸抓取任务。我们的结果表明,不同的前脑于核团进入脊髓亚回路,以调节运动程序的特定任务方面。

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