Spontaneous corticospinal axonal plasticity and functional recovery after adult central nervous system injury
Explore this paper's citation graph
Summary
Extensive spontaneous structural plasticity is found as a mechanism correlating with functional recovery in motor systems in the adult central nervous system.
- Type
- article
- Published
- 2001-03-13
- Cited by
- 544
- References
- 59
- Access
- Open access
- OpenAlex
- https://openalex.org/W2161475511
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:6059450
Keywords
Corticospinal tract, Spontaneous recovery, Spinal cord, Pyramidal tracts, Spinal cord injury
References
- Fetal Spinal Cord Transplants Support Growth of Supraspinal and Segmental Projections after Cervical Spinal Cord Hemisection in the Neonatal Rat
- Corticospinal Function and Voluntary Movement
- Cellular Delivery of Neurotrophin-3 Promotes Corticospinal Axonal Growth and Partial Functional Recovery after Spinal Cord Injury
- Complete Compensation in Skilled Reaching Success with Associated Impairments in Limb Synergies, after Dorsal Column Lesion in the Rat
- Methylprednisolone or naloxone treatment after acute spinal cord injury: 1-year follow-up data. Results of the second National Acute Spinal Cord Injury Study.
- Descending motor pathways and the spinal motor system: limbic and non-limbic components.
- Temporal parameters of axon "sprouting" in the brain of the adult rat.
- Functional recovery of paraplegic rats and motor axon regeneration in their spinal cords by olfactory ensheathing glia.
- Spinal Cord Repair in Adult Paraplegic Rats: Partial Restoration of Hind Limb Function
- Anatomical plasticity and sparing of function after spinal cord damage in neonatal cats.
- Repair of adult rat corticospinal tract by transplants of olfactory ensheathing cells.
- Reinnervation of dentate gyrus by homologous afferents following entorhinal cortical lesions in adult rats.
- Neurotrophin-3 enhances sprouting of corticospinal tract during development and after adult spinal cord lesion
- Synaptic rearrangement in the dentate gyrus: histochemical evidence of adjustments after lesions in immature and adult rats.
- Forelimb motor performance following dorsal column, dorsolateral funiculi, or ventrolateral funiculi lesions of the cervical spinal cord in the rat.
- Recovery of Functional Status After Stroke: A Postrehabilitation Follow‐up Study
- Synaptogenesis and dendritic growth in the cortex opposite unilateral sensorimotor cortex damage in adult rats: a quantitative electron microscopic examination.
- Visible changes in lesion borders on CT scan after five years poststroke, and long-term recovery in aphasia.
- Red nucleus lesions do not affect limb preference or use, but exacerbate the effects of motor cortex lesions on grasping in the rat.
- Infant lesion effect: II. Sparing and recovery of function after spinal cord damage in newborn and adult cats.
Cited by
- Inosine induces axonal rewiring and improves behavioral outcome after stroke
- Partial Return of Motor Function in Paralyzed Legs after Surgical Bypass of the Lesion Site by Nerve Autografts Three Years after Spinal Cord Injury
- Differential expression of cell fate determinants in neurons and glial cells of adult mouse spinal cord after compression injury
- Long-Term Survival and Outgrowth of Mechanically Engineered Nervous Tissue Constructs Implanted Into Spinal Cord Lesions
- Recovery from a Spinal Cord Injury: Significance of Compensation, Neural Plasticity, and Repair
- Systems neurobiology of restorative neurology and future directions for repair of the damaged motor systems.
- Gene therapy, neurotrophic factors and spinal cord regeneration.
- A re-assessment of the effects of treatment with a non-steroidal anti-inflammatory (ibuprofen) on promoting axon regeneration via RhoA inhibition after spinal cord injury.
- Cutaneous afferent regulation of motor function.
- From bench to beside to cure spinal cord injury: lost in translation?
- The phenomenon of spasticity: a pathophysiological and clinical introduction to neuromodulation therapies.
- Clinical neurophysiology in the prognosis and monitoring of traumatic spinal cord injury.
- Facilitation of descending excitatory and spinal inhibitory networks from training of endurance and precision walking in participants with incomplete spinal cord injury.
- A novel closed-body model of spinal cord injury caused by high-pressure air blasts produces extensive axonal injury and motor impairments
- Transplantation of stem cells from human umbilical cord blood to improve regeneration after spinal cord injury
- Sox9 conditional knockdown reduces chondroitin sulphate proteoglycan expression, increases neuroplasticity, and improves motor function in a mouse model of spinal cord injury
- Caractérisation biomécanique et physiologique de la cocontraction spastique dans la parésie spastique
- Animal Models of Spinal Cord Repair
- Studies on repairing of hemisected thoracic spinal cord of adultrats by using a chitosan tube filled with alginate fibers
- Characterising changes in pathology and function in clinically relevant models of spinal cord injury and using chondroitinase ABC gene therapy to promote repair
Related papers
- Absence of impairments or recovery mediated by the uncrossed pyramidal tract in the rat versus enduring deficits produced by the crossed pyramidal tract.
- THE HUMAN PYRAMIDAL TRACT: IX. EFFECT OF PARALYSIS PRODUCED BY CEREBRAL TUMORS ON AXONS OF THE PYRAMIDS
- Development and malformations of the human pyramidal tract
- The evidence against somatotopic organization of function in the primate corticospinal tract.
- Immunocytochemical localization of cell adhesion molecule L1 in developing rat pyramidal tract.
- Evaluation of the Relationship Between Neuromotor Outcome and Wallerian Degeneration of Corticospinal Tract after Cerebral Infarction Using Diffusion-tensor MR Imaging
- Can fully automated detection of corticospinal tract damage be used in stroke patients?
- Diffusion tensor imaging of pyramidal tract reorganization after pediatric stroke
- Motor control via spared peri-infarct corticospinal tract in patients with pontine infarct.