The neuronal networks that generate locomotion are well understood in swimming animals such as the lamprey, zebrafish and tadpole. The networks controlling locomotion in tetrapods remain, however, still enigmatic with an intricate motor pattern required for the control of the entire limb during the support, lift off, and flexion phase, and most demandingly when the limb makes contact with ground again. It is clear that the inhibition that occurs between bursts in each step cycle is produced by V2b and V1 interneurons, and that a deletion of these interneurons leads to synchronous flexor–extensor bursting. The ability to generate rhythmic bursting is distributed over all segments comprising part of the central pattern generator network (CPG)...
Animals propel themselves through space, swimming, walking or flying, by rhythmic oscillatory moveme...
Central pattern generators (CPGs) are circuits that generate organized and repetitive motor patterns...
Networks at various levels of the nervous system coordinate different motor patterns such as respira...
The networks of neurones in the spinal cord which control vertebrate locomotion, commonly called cen...
Motor networks typically generate several related output patterns or gaits where individual neurons ...
Motor networks typically generate several related output patterns or gaits where individual neurons ...
The organization of neural circuits that form the locomotor central pattern generator (CPG) andprovi...
Swimming in lampreys is generated by a Central Pattern Generator (CPG) in the spinal cord. This CPG ...
Animals propel themselves through space, swimming, walking or flying, by rhythmic oscillatory moveme...
In vertebrates, the central nervous system processes sensorial input from surroundings and in most o...
This article provides a perspective on major innovations over the past century in research on the sp...
In vertebrates, the central nervous system processes sensorial input from surroundings and in most o...
Animals propel themselves through space, swimming, walking or flying, by rhythmic oscillatory moveme...
Synopsis Locomotor behavior in mammals requires a complex pattern of muscle activation. Neural netwo...
Synopsis Locomotor behavior in mammals requires a complex pattern of muscle activation. Neural netwo...
Animals propel themselves through space, swimming, walking or flying, by rhythmic oscillatory moveme...
Central pattern generators (CPGs) are circuits that generate organized and repetitive motor patterns...
Networks at various levels of the nervous system coordinate different motor patterns such as respira...
The networks of neurones in the spinal cord which control vertebrate locomotion, commonly called cen...
Motor networks typically generate several related output patterns or gaits where individual neurons ...
Motor networks typically generate several related output patterns or gaits where individual neurons ...
The organization of neural circuits that form the locomotor central pattern generator (CPG) andprovi...
Swimming in lampreys is generated by a Central Pattern Generator (CPG) in the spinal cord. This CPG ...
Animals propel themselves through space, swimming, walking or flying, by rhythmic oscillatory moveme...
In vertebrates, the central nervous system processes sensorial input from surroundings and in most o...
This article provides a perspective on major innovations over the past century in research on the sp...
In vertebrates, the central nervous system processes sensorial input from surroundings and in most o...
Animals propel themselves through space, swimming, walking or flying, by rhythmic oscillatory moveme...
Synopsis Locomotor behavior in mammals requires a complex pattern of muscle activation. Neural netwo...
Synopsis Locomotor behavior in mammals requires a complex pattern of muscle activation. Neural netwo...
Animals propel themselves through space, swimming, walking or flying, by rhythmic oscillatory moveme...
Central pattern generators (CPGs) are circuits that generate organized and repetitive motor patterns...
Networks at various levels of the nervous system coordinate different motor patterns such as respira...