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Towards predictive and decentralized bio-inspired navigation models for distributed systems., , , и . SSCI, стр. 1-8. IEEE, (2021)Autonomous construction and exploitation of a spatial memory by a self-motivated agent., , , и . Cogn. Syst. Res., (2017)Identifying and localizing dynamic affordances to improve interactions with other agents., , и . ICDL, стр. 42-47. IEEE, (2022)A Bio-Inspired Model for Robust Navigation Assistive Devices: A Proof of Concept., , и . IHAW, том 1799 из Communications in Computer and Information Science, стр. 17-33. Springer, (2022)Autonomous object modeling based on affordances for spatial organization of behavior., , и . ICDL-EPIROB, стр. 87-92. IEEE, (2014)Mécanismes d'apprentissage développemental et intrinsèquement motivés en intelligence artificielle : étude des mécanismes d'intégration de l'espace environnemental. (Developmental and intrinsically motivated learning mechanisms in artificial intelligence : study of environmental space integration mechanisms).. Claude Bernard University Lyon 1, France, (2014)Using Force-Feedback Haptic Effects to Develop Serious and Entertainment Games Accessible for Visually Impaired People., , , и . IHAW, том 1538 из Communications in Computer and Information Science, стр. 185-197. Springer, (2021)The MAPS: Toward a Novel Mobility Assistance System for Visually Impaired People., , , , и . Sensors, 22 (9): 3316 (2022)F2T: A Novel Force-Feedback Haptic Architecture Delivering 2D Data to Visually Impaired People., , , и . IEEE Access, (2021)Towards Haptic Surface Devices with Force Feedback for Visually Impaired People., , и . ICCHP (2), том 10897 из Lecture Notes in Computer Science, стр. 258-266. Springer, (2018)