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Origin of excitation underlying locomotion in the spinal circuit of zebrafish.


ABSTRACT: Neural circuits in the spinal cord transform instructive signals from the brain into well-coordinated locomotor movements by virtue of rhythm-generating components. Although evidence suggests that excitatory interneurons are the essence of locomotor rhythm generation, their molecular identity and the assessment of their necessity have remained unclear. Here we show, using larval zebrafish, that V2a interneurons represent an intrinsic source of excitation necessary for the normal expression of the locomotor rhythm. Acute and selective ablation of these interneurons increases the threshold of induction of swimming activity, decreases the burst frequency, and alters the coordination of the rostro-caudal propagation of activity. Thus, our results argue that V2a interneurons represent a source of excitation that endows the spinal circuit with the capacity to generate locomotion.

SUBMITTER: Eklof-Ljunggren E 

PROVIDER: S-EPMC3325722 | biostudies-literature | 2012 Apr

REPOSITORIES: biostudies-literature

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Origin of excitation underlying locomotion in the spinal circuit of zebrafish.

Eklöf-Ljunggren Emma E   Haupt Sabine S   Ausborn Jessica J   Dehnisch Ivar I   Uhlén Per P   Higashijima Shin-ichi S   El Manira Abdeljabbar A  

Proceedings of the National Academy of Sciences of the United States of America 20120319 14


Neural circuits in the spinal cord transform instructive signals from the brain into well-coordinated locomotor movements by virtue of rhythm-generating components. Although evidence suggests that excitatory interneurons are the essence of locomotor rhythm generation, their molecular identity and the assessment of their necessity have remained unclear. Here we show, using larval zebrafish, that V2a interneurons represent an intrinsic source of excitation necessary for the normal expression of th  ...[more]

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