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Spiking Neurons Integrating Visual Stimuli Orientation and Direction Selectivity in a Robotic Context.
Cyr, André; Thériault, Frédéric; Ross, Matthew; Berberian, Nareg; Chartier, Sylvain.
Afiliación
  • Cyr A; Conec Laboratory, School of Psychology, Ottawa University, Ottawa, ON, Canada.
  • Thériault F; Department of Computer Science, Cégep du Vieux Montréal, Montreal, QC, Canada.
  • Ross M; Conec Laboratory, School of Psychology, Ottawa University, Ottawa, ON, Canada.
  • Berberian N; Conec Laboratory, School of Psychology, Ottawa University, Ottawa, ON, Canada.
  • Chartier S; Conec Laboratory, School of Psychology, Ottawa University, Ottawa, ON, Canada.
Front Neurorobot ; 12: 75, 2018.
Article en En | MEDLINE | ID: mdl-30524261
Visual motion detection is essential for the survival of many species. The phenomenon includes several spatial properties, not fully understood at the level of a neural circuit. This paper proposes a computational model of a visual motion detector that integrates direction and orientation selectivity features. A recent experiment in the Drosophila model highlights that stimulus orientation influences the neural response of direction cells. However, this interaction and the significance at the behavioral level are currently unknown. As such, another objective of this article is to study the effect of merging these two visual processes when contextualized in a neuro-robotic model and an operant conditioning procedure. In this work, the learning task was solved using an artificial spiking neural network, acting as the brain controller for virtual and physical robots, showing a behavior modulation from the integration of both visual processes.
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Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: Front Neurorobot Año: 2018 Tipo del documento: Article País de afiliación: Canadá

Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: Front Neurorobot Año: 2018 Tipo del documento: Article País de afiliación: Canadá