Peripheral control of the spinal pattern generators for locomotion in cat.
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- Type
- article
- Published
- 1978-07-21
- Cited by
- 110
- References
- 20
- OpenAlex
- https://openalex.org/W2029829764
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:38383534
Keywords
Spinal cord, Spinal cord injury, Neuroscience, Sensory system, Physical medicine and rehabilitation
References
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- The Response of a Proprioceptor to the Undulatory Movements of Dogfish
- The effect of DOPA on the spinal cord. 6. Half-centre organization of interneurones transmitting effects from the flexor reflex afferents.
- Is there a peripheral control of the central pattern generators for swimming in dogfish?
- The locomotion of the acute spinal cat injected with clonidine i.v.
- How detailed is the central pattern generation for locomotion?
- Stable long-term recordings from cat peripheral nerves.
- An electromyographic analysis of muscular activity in the hindlimb of the cat during unrestrained locomotion.
- On the initiation of the swing phase of locomotion in chronic spinal cats.
- Properties of the trochanteral hair plate and its function in the control of walking in the cockroach.
- Locomotion in vertebrates: central mechanisms and reflex interaction.
- The intrinsic factors in the act of progression in the mammal
- Flexion‐reflex of the limb, crossed extension‐reflex, and reflex stepping and standing
- Responses of Golgi tendon organs to active contractions of the soleus muscle of the cat.
- MUSCLE SPINDLES AND THEIR MOTOR CONTROL.
- Aplysia bursting neurons as endogenous oscillators. I. Phase-response curves for pulsed inhibitory synaptic input.
- Locomotion in the Spinal Cat
- Function of Segmental Reflexes in the Control of Stepping in Cockroaches and Cats
- Central Generation of Locomotion in Vertebrates
Cited by
- Fetal Spinal Cord Transplants Support Growth of Supraspinal and Segmental Projections after Cervical Spinal Cord Hemisection in the Neonatal Rat
- Intersegmental Coordination of Central Neural Oscillators for Rhythmic Movements of the Walking Legs in Crayfish, Pacifastacus Leniusculus
- Transplants and neurotrophic factors increase regeneration and recovery of function after spinal cord injury.
- Clonus after human spinal cord injury cannot be attributed solely to recurrent muscle-tendon stretch
- Interaction between central and peripheral mechanisms in the control of locomotion.
- Human lumbosacral spinal cord interprets loading during stepping.
- Neural basis of rhythmic behavior in animals.
- Entrainment of the spinal pattern generators for swimming by mechano-sensitive elements in the lamprey spinal cord in vitro.
- Basic concepts of activity-based interventions for improved recovery of motor function after spinal cord injury.
- Toward stimulating the central generator of stepping.
- Levers to generate movement
- The initiation of the swing phase in human infant stepping: importance of hip position and leg loading
- Single joint perturbation during gait: preserved compensatory response pattern in spinal cord injured subjects.
- The locomotion of the low spinal cat. I. Coordination within a hindlimb.
- Modulation of segmental reflex reactions during actual locomotion in rats
- Can the λ model be used to interpret the activity of single neurons?
- Joint receptors and the control of movement
- What does body configuration in microgravity tell us about the contribution of intra- and extrapersonal frames of reference for motor control?
- Twisted pairs: Does the motor system really care about joint configurations?
- Conservative or nonconservative control schemes
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- The Changes in the Expression of CD44 of Rat with Hemisection of Spinal Cord Injury
- Embryonic assembly of a central pattern generator without sensory input