How to Enhance Ipsilateral Actions of Pyramidal Tract Neurons
Open Access
- 10 August 2005
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 25 (32) , 7401-7405
- https://doi.org/10.1523/jneurosci.1838-05.2005
Abstract
We have shown previously that ipsilateral pyramidal tract (PT) neurons facilitate the actions of reticulospinal neurons on feline motoneurons (Edgley et al., 2004), which indicates that they might assist the recovery of motor functions after injuries of contralateral corticospinal neurons. Nevertheless, stimulation of ipsilateral PT fibers alone only rarely evoked any synaptic actions in motoneurons. The aim of this study was to investigate possible ways of enhancing such actions and of inducing more effective excitation and inhibition of motoneurons. The effects of stimulation of the ipsilateral PT were investigated after eliminating the spinal actions of contralateral PT fibers by hemisecting the spinal cord at a low thoracic level and were estimated from intracellular records from hindlimb motoneurons. Two measures were used to enhance PT actions. The first was to increase the probability of activation of reticulospinal neurons by mutual facilitation of actions of ipsilateral and contralateral PT neurons. The second was to enhance synaptic transmission between PT neurons and reticulospinal neurons, and in pathways between the reticulospinal neurons and motoneurons via commissural interneurons, by systemic application of a K+ channel blocker, 4-aminopyridine (4-AP). The results show that under favorable conditions, ipsilateral PT neurons may induce EPSPs and IPSPs in hindlimb motoneurons, or even action potentials, via the reticulospinal pathway. This study strengthens previous conclusions that ipsilateral PT neurons can potentially replace, at least to some extent, the actions of injured contralateral PT neurons. It also suggests that 4-AP might improve the progress of the recovery.Keywords
This publication has 16 references indexed in Scilit:
- Ipsilateral Actions of Feline Corticospinal Tract Neurons on Limb MotoneuronsJournal of Neuroscience, 2004
- Bilateral responses of upper limb muscles to transcranial magnetic stimulation in human subjectsExperimental Brain Research, 2004
- Influence of whole-body pitch tilt and kinesthetic cues on the perceived gravity-referenced eye levelExperimental Brain Research, 2004
- Mechanisms of axonal dysfunction after spinal cord injury: with an emphasis on the role of voltage-gated potassium channelsBrain Research Reviews, 2001
- Contralateral and ipsilateral EMG responses to transcranial magnetic stimulation during recovery of arm and hand function after strokeElectroencephalography and Clinical Neurophysiology/Electromyography and Motor Control, 1996
- Cerebral plasticity after stroke as revealed by ipsilateral responses to magnetic stimulationNeuroReport, 1996
- Pyramidal and corticospinal synaptic effects over reticulospinal neurones in the cat.The Journal of Physiology, 1993
- 4-Aminopyridine in Chronic Spinal Cord Injury: A Controlled, Double-Blind, Crossover Study in Eight PatientsJournal of Neurotrauma, 1993
- Effects of 4-aminopyridine on transmission in excitatory and inhibitory synapses in the spinal cordBrain Research, 1977
- The time course of minimal excitatory post‐synaptic potentials evoked in spinal motoneurones by group la afferent fibresThe Journal of Physiology, 1971