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Neural Netw ; 72: 62-74, 2015 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-26548944

RESUMO

There has been extensive research in recent years on the multi-scale nature of hippocampal place cells and entorhinal grid cells encoding which led to many speculations on their role in spatial cognition. In this paper we focus on the multi-scale nature of place cells and how they contribute to faster learning during goal-oriented navigation when compared to a spatial cognition system composed of single scale place cells. The task consists of a circular arena with a fixed goal location, in which a robot is trained to find the shortest path to the goal after a number of learning trials. Synaptic connections are modified using a reinforcement learning paradigm adapted to the place cells multi-scale architecture. The model is evaluated in both simulation and physical robots. We find that larger scale and combined multi-scale representations favor goal-oriented navigation task learning.


Assuntos
Objetivos , Hipocampo/fisiologia , Modelos Neurológicos , Reforço Psicológico , Robótica , Navegação Espacial/fisiologia , Cognição , Hipocampo/citologia , Humanos , Aprendizagem
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