Fast and Slow Locomotor Burst Generation in the Hemispinal Cord of the Lamprey
Open Access
- 1 June 2003
- journal article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 89 (6), 2931-2942
- https://doi.org/10.1152/jn.01100.2002
Abstract
A fundamental question in vertebrate locomotion is whether distinct spinal networks exist that are capable of generating rhythmic output for each group of muscle synergists. In many vertebrates including the lamprey, it has been claimed that burst activity depends on reciprocal inhibition between antagonists. This question was addressed in the isolated lamprey spinal cord in which the left and right sides of each myotome display rhythmic alternating activity. We sectioned the spinal cord along the midline and tested whether rhythmic motor activity could be induced in the hemicord with bath-applied d-glutamate or N-methyl-d-aspartate (NMDA) as in the intact spinal cord or by brief trains of electrical stimuli. Fast rhythmic bursting (2–12 Hz), coordinated across ventral roots, was observed with all three methods. Furthermore, to diminish gradually the crossed glycinergic inhibition, a progressive surgical lesioning of axons crossing the midline was implemented. This resulted in a gradual increase in burst frequency, linking firmly the fast hemicord rhythm [6.6 ± 1.7 (SD) Hz] to fictive swimming in the intact cord (2.4 ± 0.7 Hz). Ipsilateral glycinergic inhibition was not required for the hemicord burst pattern generation, suggesting that an interaction between excitatory glutamatergic neurons suffices to produce the unilateral burst pattern. In NMDA, burst activity at a much lower rate (0.1–0.4 Hz) was also encountered, which required the voltage-dependent properties of NMDA receptors in contrast to the fast rhythm. Swimming is thus produced by pairs of unilateral burst generating networks with reciprocal inhibitory connections that not only ensure left/right alternation but also downregulate frequency.Keywords
This publication has 43 references indexed in Scilit:
- Distribution of Central Pattern Generators for Rhythmic Motor Outputs in the Spinal Cord of Limbed VertebratesaAnnals of the New York Academy of Sciences, 1998
- Evidence for a Spinal Central Pattern Generator in HumansaAnnals of the New York Academy of Sciences, 1998
- Roles of Glycinergic Inhibition and N‐Methyl‐D‐Aspartate Receptor Mediated Excitation in the Locomotor Rhythmicity of One Half of the Xenopus Embryo Central Nervous SystemEuropean Journal of Neuroscience, 1989
- Newly Identified 'Glutamate Interneurons' and Their Role in Locomotion in the Lamprey Spinal CordScience, 1987
- Neurobiological Bases of Rhythmic Motor Acts in VertebratesScience, 1985
- Magnesium gates glutamate-activated channels in mouse central neuronesNature, 1984
- Activation of NMDA‐receptors elicits “Fictive locomotion” in lamprey spinal cord in vitroActa Physiologica Scandinavica, 1981
- Control of Locomotion in Bipeds, Tetrapods, and FishPublished by American Geophysical Union (AGU) ,1981
- Does the central pattern generation for locomotion in lamprey depend on glycine inhibition?Acta Physiologica Scandinavica, 1980
- Synaptic interactions of identified nerve cells in the spinal cord of the sea lampreyJournal of Comparative Neurology, 1974