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Computational models of spinal locomotor circuitry

Drexel University, Philadelphia, USA

Hosted by NeuroLeman Network

· 70 minutes
Philadelphia, PA, USA · Hybrid

Abstract

To effectively move in complex and changing environments, animals must control locomotor speed and gait, while precisely coordinating and adapting limb movements to the terrain. The underlying neuronal control is facilitated by circuits in the spinal cord, which integrate supraspinal commands and afferent feedback signals to produce coordinated rhythmic muscle activations necessary for stable locomotion. I will present a series of computational models investigating dynamics of central neuronal interactions as well as a neuromechanical model that integrates neuronal circuits with a model of the musculoskeletal system. These models closely reproduce speed-dependent gait expression and experimentally observed changes following manipulation of multiple classes of genetically-identified neuronal populations. I will discuss the utility of these models in providing experimentally testable predictions for future studies.

Topics

Neuro-X Seminarcentral neuronal interactionscomputational modelsgaitgenetically-identified neuronal populationslocomotionmuscle activationsneuromechanical model
More topics
neuronal controlspinal locomotor circuitry

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