How does a short history of spinal cord injury affect movement‐related brain potentials?
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Summary
Findings suggest that neurofunctional changes that take place in the brain after a SCI may be shown earlier by the motor potential than by the readiness potential, which is similar to that of healthy participants who conducted the movement.
- Type
- article
- Published
- 2007-05-01
- Cited by
- 38
- References
- 49
- OpenAlex
- https://openalex.org/W1945029780
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:24603806
Keywords
Psychology, Paraplegia, Physical medicine and rehabilitation, Spinal cord injury, Spinal cord
References
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- What happens to the readiness potential when the movement is not executed?
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Cited by
- The multicomponential nature of movement-related cortical potentials: functional generators and psychological factors
- Analyse cinématique de la préhension après tétraplégie : bases neurales et impact de l’imagerie motrice
- Re-establishing the disrupted sensorimotor loop in deafferented and deefferented people: The case of spinal cord injuries.
- Quantitative EEG and neuromodulation for the treatment of central neuropathic pain in paraplegic patients
- Massive somatic deafferentation and motor deefferentation of the lower part of the body impair its visual recognition: a psychophysical study of patients with spinal cord injury
- Changes in spectrum mapping in rhythmic movement involved in walking after spinal cord injury
- Temporal dynamics of conflict monitoring and the effects of one or two conflict sources on error-(related) negativity.
- Brain activity during walking in patient with spinal cord injury
- Reorganization and Preservation of Motor Control of the Brain in Spinal Cord Injury: A Systematic Review
- Rubber hand illusion induced by touching the face ipsilaterally to a deprived hand: evidence for plastic “somatotopic” remapping in tetraplegics
- Does the force level modulate the cortical activity during isometric contractions after a cervical spinal cord injury?
- Changes in movement-related β-band EEG signals in human spinal cord injury.
- Monitoring force errors: medial-frontal negativity in a unimanual force-production task.
- The Assessment of EEG in Patients with Spinal Cord Injury to Movements
- Long-term neuroplasticity in spinal cord injury patients: a study on movement-related brain potentials.
- Analyzing EEG signals to detect unexpected obstacles during walking
- Improvement of grasping after motor imagery in C6-C7 tetraplegia: A kinematic and MEG pilot study
- Factors of Influence on the Performance of a Short-Latency Non-Invasive Brain Switch: Evidence in Healthy Individuals and Implication for Motor Function Rehabilitation
- Epidemiology of traumatic spinal cord injury in Estonia. Brain activation in the acute phase of traumatic spinal cord injury
- Autonomous Brain-Controlled Functional Electrical Stimulation for Grasp and Release in Complete Cervical Spinal Cord Injury
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