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中脑回路设定运动速度和步态选择。

Midbrain circuits that set locomotor speed and gait selection.

机构信息

Mammalian Locomotor Laboratory, Department of Neuroscience, Karolinska Institutet, 17177 Stockholm, Sweden.

Department of Neuroscience, University of Copenhagen, Blegdamsvej 3, 2200 Copenhagen, Denmark.

出版信息

Nature. 2018 Jan 25;553(7689):455-460. doi: 10.1038/nature25448. Epub 2018 Jan 17.

Abstract

Locomotion is a fundamental motor function common to the animal kingdom. It is implemented episodically and adapted to behavioural needs, including exploration, which requires slow locomotion, and escape behaviour, which necessitates faster speeds. The control of these functions originates in brainstem structures, although the neuronal substrate(s) that support them have not yet been elucidated. Here we show in mice that speed and gait selection are controlled by glutamatergic excitatory neurons (GlutNs) segregated in two distinct midbrain nuclei: the cuneiform nucleus (CnF) and the pedunculopontine nucleus (PPN). GlutNs in both of these regions contribute to the control of slower, alternating-gait locomotion, whereas only GlutNs in the CnF are able to elicit high-speed, synchronous-gait locomotion. Additionally, both the activation dynamics and the input and output connectivity matrices of GlutNs in the PPN and the CnF support explorative and escape locomotion, respectively. Our results identify two regions in the midbrain that act in conjunction to select context-dependent locomotor behaviours.

摘要

运动是动物王国中一种基本的运动功能。它是间歇性执行的,并适应行为需求,包括探索,这需要缓慢的运动,和逃避行为,这需要更快的速度。这些功能的控制起源于脑干结构,尽管支持它们的神经元基底尚未阐明。在这里,我们在小鼠中表明,速度和步态选择由谷氨酸能兴奋性神经元(GlutNs)控制,这些神经元分离在两个不同的中脑核团中:楔形核(CnF)和脚桥被盖核(PPN)。这两个区域的 GlutNs 都有助于控制较慢的交替步态运动,而只有 CnF 中的 GlutNs 能够引发高速同步步态运动。此外,PPN 和 CnF 中的 GlutNs 的激活动态以及输入和输出连接矩阵分别支持探索性和逃避性运动。我们的结果确定了中脑的两个区域,它们协同作用以选择上下文相关的运动行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8b5/5937258/b7d13c87291f/nihms926480f7.jpg

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