arXiv Open Access 2025

A Biologically Interpretable Cognitive Architecture for Online Structuring of Episodic Memories into Cognitive Maps

E. A. Dzhivelikian A. I. Panov
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Abstrak

Cognitive maps provide a powerful framework for understanding spatial and abstract reasoning in biological and artificial agents. While recent computational models link cognitive maps to hippocampal-entorhinal mechanisms, they often rely on global optimization rules (e.g., backpropagation) that lack biological plausibility. In this work, we propose a novel cognitive architecture for structuring episodic memories into cognitive maps using local, Hebbian-like learning rules, compatible with neural substrate constraints. Our model integrates the Successor Features framework with episodic memories, enabling incremental, online learning through agent-environment interaction. We demonstrate its efficacy in a partially observable grid-world, where the architecture autonomously organizes memories into structured representations without centralized optimization. This work bridges computational neuroscience and AI, offering a biologically grounded approach to cognitive map formation in artificial adaptive agents.

Topik & Kata Kunci

Penulis (2)

E

E. A. Dzhivelikian

A

A. I. Panov

Format Sitasi

Dzhivelikian, E.A., Panov, A.I. (2025). A Biologically Interpretable Cognitive Architecture for Online Structuring of Episodic Memories into Cognitive Maps. https://arxiv.org/abs/2510.03286

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Informasi Jurnal
Tahun Terbit
2025
Bahasa
en
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arXiv
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Open Access ✓