脑干
神经科学
谷氨酸的
斑马鱼
电生理学
钙显像
生物神经网络
神经元
生物
内侧纵束
运动前神经元活动
谷氨酸受体
中脑
医学
中枢神经系统
基因
生物化学
受体
内科学
钙
作者
Eva Berg,Leander Mrowka,Maria Bertuzzi,David Madrid,Laurence D. Picton,Abdeljabbar El Manira
出处
期刊:Neuron
[Cell Press]
日期:2023-02-01
卷期号:111 (3): 372-386.e4
被引量:15
标识
DOI:10.1016/j.neuron.2022.10.034
摘要
The flexibility of locomotor movements requires an accurate control of their start, duration, and speed. How brainstem circuits encode and convey these locomotor parameters remains unclear. Here, we have combined in vivo calcium imaging, electrophysiology, anatomy, and behavior in adult zebrafish to address these questions. We reveal that the detailed parameters of locomotor movements are encoded by two molecularly, topographically, and functionally segregated glutamatergic neuron subpopulations within the nucleus of the medial longitudinal fasciculus. The start, duration, and changes of locomotion speed are encoded by vGlut2+ neurons, whereas vGlut1+ neurons encode sudden changes to high speed/high amplitude movements. Ablation of vGlut2+ neurons compromised slow-explorative swimming, whereas vGlut1+ neuron ablation impaired fast swimming. Our results provide mechanistic insights into how separate brainstem subpopulations implement flexible locomotor commands. These two brainstem command subpopulations are suitably organized to integrate environmental cues and hence generate flexible swimming movements to match the animal’s behavioral needs.
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