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Single-cell transcriptomic analysis unveils spinal motor neuron subtype diversity underpinning the water-to-land transition in vertebrates

2021-09-30

Abstract excerpt

Spinal motor neurons (MNs) integrate sensory stimuli and brain commands to generate motor movements in vertebrates. Distinct MN populations and their diversity has long been hypothesized to co-evolve with motor circuit to provide the neural basis from undulatory to ambulatory locomotion during aquatic-to-terrestrial transition of vertebrates. However, how these subtypes are evolved remains largely enigmatic. Using...

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Literature Corpus work
70e1a9fa-53c1-54d3-b22e-fe5bcf55b64c
DOI
10.1101/2021.09.29.462340
Open publication

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Single-cell transcriptomic analysis unveils spinal motor neuron subtype diversity underpinning the water-to-land transition in vertebratesDOI 10.1101/2021.09.29.462340
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