A computational neural model that describes the competing roles of Basal Ganglia and Hippocampus in spatial navigation is presented. Model performance is evaluated on a simulated Morris water maze explored by a model rat. Cue-based and place-based navigational strategies, thought to be subserved by the Basal ganglia and Hippocampus respectively, are described. In cue-based navigation, the model rat learns to directly head towards a visible target, while in place-based navigation the target position is represented in terms of spatial context provided by an array of poles placed around the pool. Learning is formulated within the framework of Reinforcement Learning, with the nigrostriatal dopamine signal playing the role of Temporal Difference...
International audienceIn contrast to predictions derived from the associative learning theory, a num...
International audienceIn contrast to predictions derived from the associative learning theory, a num...
Several studies in rats support the idea of multiple neural systems competing to select the best act...
A computational neural model that describes the competing roles of Basal Ganglia and Hippocampus in ...
<div><p>A computational neural model that describes the competing roles of Basal Ganglia and Hippoca...
Humans and non-human animals show great flexibility in spatial navigation, including the ability to ...
A computational model of the hippocampal function in spatial learning is presented. A spatial repres...
International audienceA computational model of the hippocampal function in spatial learning is prese...
International audienceA computational model of the hippocampal function in spatial learning is prese...
International audienceA computational model of the hippocampal function in spatial learning is prese...
International audienceA computational model of the hippocampal function in spatial learning is prese...
Several studies in rats support the idea of multiple neural systems competing to select the best act...
International audienceA computational model of the hippocampal function in spatial learning is prese...
International audienceIn contrast to predictions derived from the associative learning theory, a num...
International audienceIn contrast to predictions derived from the associative learning theory, a num...
International audienceIn contrast to predictions derived from the associative learning theory, a num...
International audienceIn contrast to predictions derived from the associative learning theory, a num...
Several studies in rats support the idea of multiple neural systems competing to select the best act...
A computational neural model that describes the competing roles of Basal Ganglia and Hippocampus in ...
<div><p>A computational neural model that describes the competing roles of Basal Ganglia and Hippoca...
Humans and non-human animals show great flexibility in spatial navigation, including the ability to ...
A computational model of the hippocampal function in spatial learning is presented. A spatial repres...
International audienceA computational model of the hippocampal function in spatial learning is prese...
International audienceA computational model of the hippocampal function in spatial learning is prese...
International audienceA computational model of the hippocampal function in spatial learning is prese...
International audienceA computational model of the hippocampal function in spatial learning is prese...
Several studies in rats support the idea of multiple neural systems competing to select the best act...
International audienceA computational model of the hippocampal function in spatial learning is prese...
International audienceIn contrast to predictions derived from the associative learning theory, a num...
International audienceIn contrast to predictions derived from the associative learning theory, a num...
International audienceIn contrast to predictions derived from the associative learning theory, a num...
International audienceIn contrast to predictions derived from the associative learning theory, a num...
Several studies in rats support the idea of multiple neural systems competing to select the best act...