Unilateral dorsal column and rubrospinal tract injuries affect overground locomotion in the unrestrained rat
- 22 July 2003
- journal article
- research article
- Published by Wiley in European Journal of Neuroscience
- Vol. 18 (2) , 412-422
- https://doi.org/10.1046/j.1460-9568.2003.02768.x
Abstract
The purpose of this study was to determine the importance of the rubrospinal pathway and the ascending components of the dorsal column for overground locomotion in adult, unrestrained rats. The dorsal column (excluding the corticospinal tract), the rubrospinal tract or both were damaged unilaterally in rats at the level of the upper cervical spinal cord. Behavioural analysis consisted of skilled locomotion (an evaluation of footslips during ladder walking), a paw usage task and the assessment of ground reaction forces during unrestrained locomotion. All lesioned animals used the forepaw ipsilateral to the lesions less while rearing. Animals with dorsal column injuries used the forelimb contralateral to the spinal injury significantly more while rearing compared with uninjured animals. All lesioned animals produced more footfalls while crossing the ladder compared with uninjured animals. All injuries, regardless of the pathway affected, resulted in significant alterations in body weight support and reduced braking forces from the forelimb ipsilateral to the injury during overground locomotion. Animals typically bore less weight on the hindlimb ipsilateral to the lesion compared with the hindlimb contralateral to the spinal injury. Taken together with previously published work, our data indicate that the rubrospinal and dorsal column pathways are important for forelimb support while rearing and for skilled locomotion. Additionally, the ascending dorsal column pathways and the rubrospinal tract play a role during flat surface overground locomotion and combined damage to these pathways does not alter the acquired gait.Keywords
This publication has 36 references indexed in Scilit:
- Red nucleus projections to distinct motor neuron pools in the rat spinal cordJournal of Comparative Neurology, 2002
- Compensatory Locomotor Adjustments of Rats with Cervical or Thoracic Spinal Cord HemisectionsJournal of Neurotrauma, 2002
- Strain and Model Differences in Behavioral Outcomes after Spinal Cord Injury in RatJournal of Neurotrauma, 2001
- Promoting glutathione synthesis after spinal cord trauma decreases secondary damage and promotes retention of functionThe FASEB Journal, 2000
- The effects of unilateral pyramidal tract section on hindlimb motor performance in the ratBehavioural Brain Research, 1998
- Graded Histological and Locomotor Outcomes after Spinal Cord Contusion Using the NYU Weight-Drop Device versus TransectionExperimental Neurology, 1996
- Ultrastructural Changes in the Rat Phrenic Nucleus Developing within 2 h after Cervical Spinal Cord HemisectionExperimental Neurology, 1993
- Evolution of the red nucleus and rubrospinal tractBehavioural Brain Research, 1988
- Interlimb coordination during stepping in the cat: The role of the dorsal spinocerebellar tractExperimental Neurology, 1985
- Rubrospinal projections in the ratJournal of Comparative Neurology, 1974