The coordinated activity of muscles is produced in part by spinal rhythmogenic neural circuits, termed central pattern generators (CPGs). A classical CPG model is a system of coupled oscillators that transform locomotor drive into coordinated and gait-specific patterns of muscle recruitment. The network properties of this conceptual model can be simulated by a system of ordinary differential equations with a physiologically inspired coupling locus of interactions capturing the timing relationship for bilateral coordination of limbs in locomotion. Whereas most similar models are solved numerically, it is intriguing to have a full analytical description of this plausible CPG architecture to illuminate the functionality within this structure a...
Existing models have represented a locomotor system as a rhythmic driver, or central pattern generat...
Existing models have represented a locomotor system as a rhythmic driver, or central pattern generat...
As the engine behind many life phenomena, motor information generated by the central nervous system ...
The coordinated activity of muscles is produced in part by spinal rhythmogenic neural circuits, term...
The coordinated activity of muscles is produced in part by spinal rhythmogenic neural circuits, term...
The ability of vertebrates to generate rhythm within their spinal neural networks is essential for w...
The ability of vertebrates to generate rhythm within their spinal neural networks is essential for w...
Although the concept of central pattern generators (CPGs) controlling locomotion in vertebrates is w...
We developed a neuromechanical computational model of cat locomotion that simulated the locomotor mo...
The organization of neural circuits that form the locomotor central pattern generator (CPG) andprovi...
The problem of controlling locomotion is an area in which neuroscience and robotics can fruitfully i...
Locomotion involves many different muscles and the need of controlling several degrees of freedom. D...
Abstract Two types of neural circuits contribute to legged locomotion: central pattern generators (C...
International audienceIn this paper, a new neuro-musculoskeletal simulator of human locomotor system...
The ability of dedicated spinal circuits, referred to as central pattern generators (CPGs), to produ...
Existing models have represented a locomotor system as a rhythmic driver, or central pattern generat...
Existing models have represented a locomotor system as a rhythmic driver, or central pattern generat...
As the engine behind many life phenomena, motor information generated by the central nervous system ...
The coordinated activity of muscles is produced in part by spinal rhythmogenic neural circuits, term...
The coordinated activity of muscles is produced in part by spinal rhythmogenic neural circuits, term...
The ability of vertebrates to generate rhythm within their spinal neural networks is essential for w...
The ability of vertebrates to generate rhythm within their spinal neural networks is essential for w...
Although the concept of central pattern generators (CPGs) controlling locomotion in vertebrates is w...
We developed a neuromechanical computational model of cat locomotion that simulated the locomotor mo...
The organization of neural circuits that form the locomotor central pattern generator (CPG) andprovi...
The problem of controlling locomotion is an area in which neuroscience and robotics can fruitfully i...
Locomotion involves many different muscles and the need of controlling several degrees of freedom. D...
Abstract Two types of neural circuits contribute to legged locomotion: central pattern generators (C...
International audienceIn this paper, a new neuro-musculoskeletal simulator of human locomotor system...
The ability of dedicated spinal circuits, referred to as central pattern generators (CPGs), to produ...
Existing models have represented a locomotor system as a rhythmic driver, or central pattern generat...
Existing models have represented a locomotor system as a rhythmic driver, or central pattern generat...
As the engine behind many life phenomena, motor information generated by the central nervous system ...