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PMID: 7895797 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Voltage-dependent excitation of motoneurones from spinal locomotor centres in the cat.

Experimental brain research ·Vol. 102 ·No. 1 ·1994-00-00 ·Pages 34-44

Brownstone RM, Gossard JP, Hultborn H

Abstract

Lumbar motoneurones were recorded intracellularly during fictive locomotion induced by stimulation of the mesencephalic locomotor region in decerebrate cats. After blocking the action potentials using intracellular QX-314, and by using a discontinuous current clamp, it is shown that the excitatory component of the locomotor drive potentials behaves in a voltage-dependent manner, such that its amplitude increases with depolarisation. As the input to motoneurones during locomotion is comprised of alternating excitation and inhibition, it was desirable to examine the excitatory input in relative isolation. This was accomplished in spinalised decerebrate cats treated with nialamide and L-dihydroxy-phenylalanine (L-DOPA) by studying the excitatory post-synaptic potentials (EPSPs) evoked from the "flexor reflex afferents" (FRA) and extensor Ib afferents, both of which are likely to be mediated via the locomotor network. As expected, these EPSPs also demonstrate a voltage-dependent increase in amplitude. In addition, the input to motoneurones from the network for scratching, which is thought to share interneurones with the locomotor network, also results in voltage-dependent excitation. The possible underlying mechanisms of NMDA-mediated excitation and plateau potentials are discussed: both may contribute to the observed effect. It is suggested that this nonlinear increase in excitation contributes to the mechanisms involved in the production of the high rates of repetitive firing of motoneurones typically seen during locomotion, thus ensuring appropriate muscle contraction.

MeSH Terms
Action Potentials/drug effects Afferent Pathways/drug effects,physiology Anesthetics, Local/pharmacology Animals Cats Electric Stimulation Evoked Potentials/drug effects Female Levodopa/pharmacology Lidocaine/analogs & derivatives,pharmacology Locomotion Male Mesencephalon/physiology Motor Activity Motor Neurons/drug effects,physiology Nerve Fibers/drug effects,physiology Nialamide/pharmacology Spinal Cord/physiology Synaptic Transmission/drug effects Time Factors
Chemicals
Anesthetics, Local QX-314 Levodopa Lidocaine Nialamide
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Brownstone R M
Department of Physiology, Faculty of Medicine, University of Manitoba, 770 Bannatyne Ave, Winnipeg, Canada.
Gossard J P
Hultborn H
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Article Info
Journal
Experimental brain research
Abbr.
Exp Brain Res
ISSN
0014-4819
Published
1994-00-00
Pages
34-44
Language
English
Region
Germany
NLM ID
0043312
Subset
IM
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