4.7 Article

Chronic spinal hemisection in rats induces a progressive decline in transmission in uninjured fibers to motoneurons

Journal

EXPERIMENTAL NEUROLOGY
Volume 216, Issue 2, Pages 471-480

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.expneurol.2009.01.004

Keywords

Hemisection; Spinal cord injury; Motoneuron; White matter; Ventrolateral funiculus; EPSP; Synaptic transmission; Conduction velocity; Demyelination

Categories

Funding

  1. Christopher Reeve Paralysis Foundation
  2. NIH (NINDS
  3. NY State Spinal Cord Injury Research Board

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Although most spinal cord injuries are anatomically incomplete, only limited functional recovery has been observed in people and rats with partial lesions. To address why surviving fibers cannot mediate More complete recovery, we evaluated the physiological and anatomical status of spared fibers after unilateral hemisection (HX) of thoracic spinal cord in adult rats. We made intracellular and extracellular recordings at L5 (below HX) in response to electrical stimulation of contralateral white matter above (T6) and below (L1) HX. Responses from T6 displayed reduced amplitude, increased latency and elevated Stimulus threshold in the fibers across from HX, beginning 1-2 weeks after HX. Ultrastructural analysis revealed demyelination of intact axons contralateral to the HX, with a time Course similar to the conduction changes. Behavioral Studies indicated partial recovery which arrested when conduction deficits began. In Conclusion, this Study is the first demonstration of the delayed decline of transmission through surviving axons to individual lumbar motoneurons during chronic stage of incomplete spinal cord injury in adult rats. These findings Suggest a chronic pathological state in intact fibers and necessity for prompt treatment to minimize it. Published by Elsevier Inc.

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