A dual spinal cord lesion paradigm to study spinal locomotor plasticity in the cat.
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Axon regeneration and exercise-dependent plasticity after spinal cord injuryFacilitation of ipsilateral actions of corticospinal tract neurons on feline motoneurons by transcranial direct current stimulationNeuromuscular interaction is required for neurotrophins-mediated locomotor recovery following treadmill training in rat spinal cord injury.Molecular, genetic, cellular, and network functions in the spinal cord and brainstem.Recruitment of Polysynaptic Connections Underlies Functional Recovery of a Neural Circuit after Lesion.The role of the miR-99b-5p/mTOR signaling pathway in neuroregeneration in mice following spinal cord injury.Sensorimotor cortex atrophy in patients with cervical spondylotic myelopathy.
P2860
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P2860
A dual spinal cord lesion paradigm to study spinal locomotor plasticity in the cat.
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A dual spinal cord lesion paradigm to study spinal locomotor plasticity in the cat.
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A dual spinal cord lesion paradigm to study spinal locomotor plasticity in the cat.
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prefLabel
A dual spinal cord lesion paradigm to study spinal locomotor plasticity in the cat.
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P2860
P1476
A dual spinal cord lesion paradigm to study spinal locomotor plasticity in the cat.
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P2860
P304
P356
10.1111/J.1749-6632.2012.06823.X
P407
P577
2013-03-01T00:00:00Z