Treadmill step training promotes spinal cord neural plasticity after incomplete spinal cord injury
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Summary
T treadmill training significantly improves functional re-covery and neural plasticity after incomplete spinal cord injury in rats with moderate spinal cord contusion.
- Type
- article
- Published
- 2013-09-25
- Cited by
- 17
- References
- 40
- Access
- Open access
- OpenAlex
- https://openalex.org/W1508923260
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:36851960
Keywords
Medicine, Spinal cord injury, Spinal cord, Treadmill, Lumbar Spinal Cord
References
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- Recovery of locomotor function after treadmill training of incomplete spinal cord injured rats.
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- Activity-dependent regulation of neuronal plasticity and self repair.
- Spinal cord contusion models.
- Retention of hindlimb stepping ability in adult spinal cats after the cessation of step training.
- Recovery of supraspinal control of stepping via indirect propriospinal relay connections after spinal cord injury
- Locomotor Ability in Spinal Rats Is Dependent on the Amount of Activity Imposed on the Hindlimbs during Treadmill Training
- Non-assisted treadmill training does not improve motor recovery and body composition in spinal cord-transected mice
- Exercise-induced motor improvement after complete spinal cord transection and its relation to expression of brain-derived neurotrophic factor and presynaptic markers
- Constraint-Induced Movement Therapy in the Adult Rat after Unilateral Corticospinal Tract Injury
- Voluntary exercise induces a BDNF-mediated mechanism that promotes neuroplasticity.
- BDNF-Exercise Interactions in the Recovery of Symmetrical Stepping After a Cervical Hemisection In Rats
- Increased expression of glutamate decarboxylase (GAD67) in feline lumbar spinal cord after complete thoracic spinal cord transection
- Treadmill running protects spinal cord contusion from secondary degeneration.
- Distributed plasticity of locomotor pattern generators in spinal cord injured patients.
- The Effect of Treadmill Training on Motor Recovery after a Partial Spinal Cord Compression-Injury in the Adult Rat
- Spinal cholinergic interneurons regulate the excitability of motoneurons during locomotion
- Treadmill training enhances the recovery of normal stepping patterns in spinal cord contused rats
Cited by
- Functional recovery in spinal cord injured rats using polypyrrole/iodine implants and treadmill training
- Spinal cord injury: overview of experimental approaches used to restore locomotor activity
- Role of Functional Electrical Stimulation in Tetraplegia Hand Surgery.
- Rehabilitation following spinal cord injury: how animal models can help our understanding of exercise-induced neuroplasticity
- Overground gait training promotes functional recovery and cortical neuroplasticity in an incomplete spinal cord injury model.
- Effects of MiR-146a on repair and inflammation in rats with spinal cord injury through the TLR/NF-κB signaling pathway.
- Placenta mesenchymal stem cells differentiation toward neuronal-like cells on nanofibrous scaffold
- Delayed Injection of a Physically Cross-Linked PNIPAAm-g-PEG Hydrogel in Rat Contused Spinal Cord Improves Functional Recovery
- Effect of a Corset on the Gait of Healthy Beagle Dogs
- LncRNA/miRNA/mRNA ceRNA network analysis in spinal cord injury rat with physical exercise therapy
- Effect of Acute Physical Interventions on Pathophysiology and Recovery After Spinal Cord Injury: A Comprehensive Review of the Literature
- Magnetic Stimulation of Gigantocellular Reticular Nucleus with Iron Oxide Nanoparticles Combined Treadmill Training Enhanced Locomotor Recovery by Reorganizing Cortico-Reticulo-Spinal Circuit
- Effects of Du Meridian Electroacupuncture Combined with Treadmill Training on Motor Function of Rats with Spinal Cord Injury
- Enhancing Functional Recovery After Spinal Cord Injury Through Neuroplasticity: A Comprehensive Review
- Comparative study of treadmill and swimming exercises on spinal regeneration and reactive astrocytes in the brain after spinal cord injury
- Effect of Exercise Training Combined with Governor Meridian Electroacupuncture on Motor Function and Neuroplasticity in Rats with Spinal Cord Injury
- Investigation of Transcriptome Profile of Genes in Rats with Injured Spinal Cord after Transplantation of Menstrual Blood-derived Stem Cells and Treadmill Training by Sequencing Analysis
- Use of the Rat as a Model in Regenerative Medicine
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