Chapter 17 Functional regeneration and restoration of locomotor activity following spinal cord transection in the lamprey
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Reference41 articles.
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3. Excitatory synaptic drive for swimming mediated by amino acid receptors in the lamprey;Dale;J. Neurosci.,1986
4. Axonal regeneration and pathway selection by brainstem neurons and behavioral recovery in spinal-transected lamprey larvae;Davis;Soc. Neurosci. Abstr.,1992
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1. Spinal cord injury significantly alters the properties of reticulospinal neurons: delayed repolarization mediated by potassium channels;Journal of Neurophysiology;2023-11-01
2. Lampreys and spinal cord regeneration: “a very special claim on the interest of zoologists,” 1830s-present;Frontiers in Cell and Developmental Biology;2023-05-09
3. Proteomic characterization of spontaneously regrowing spinal cord following injury in the teleost fish Apteronotus leptorhynchus, a regeneration-competent vertebrate;Journal of Comparative Physiology A;2022-11
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5. Spinal Cord Injury Significantly Alters the Properties of Reticulospinal Neurons: I. Biophysical Properties, Firing Patterns, Excitability, and Synaptic Inputs;Cells;2021-07-29
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