Related Experiment Video
Updated: Jun 6, 2025

The Double-H Maze: A Robust Behavioral Test for Learning and Memory in Rodents
Published on: July 8, 2015
A tale of two algorithms: Structured slots explain prefrontal sequence memory and are unified with hippocampal
James C R Whittington1, William Dorrell2, Timothy E J Behrens3
1Department of Applied Physics, Stanford University, Palo Alto, CA, USA; Wellcome Centre for Integrative Neuroimaging, University of Oxford, Oxford, UK.
Abstract:
Remembering events is crucial to intelligent behavior. Flexible memory retrieval requires a cognitive map and is supported by two key brain systems: hippocampal episodic memory (EM) and prefrontal working memory (WM). Although an understanding of EM is emerging, little is understood of WM beyond simple memory retrieval. We develop a mathematical theory relating the algorithms and representations of EM and WM by unveiling a duality between storing memories in synapses versus neural activity. This results in a formalism of prefrontal WM as structured, controllable neural subspaces (activity slots) representing dynamic cognitive maps without synaptic plasticity. Using neural networks, we elucidate differences, similarities, and trade-offs between the hippocampal and prefrontal algorithms. Lastly, we show that prefrontal representations in tasks from list learning to cue-dependent recall are unified as controllable activity slots. Our results unify frontal and temporal representations of memory and offer a new understanding for dynamic prefrontal representations of WM.
More Related Videos
Related Concept Videos
Role of Hippocampus in Memory
Role of Cerebellum and Prefrontal Cortex in Memory
Storage
Functional Brain Systems: Limbic System
Working Memory
Chunking
The principle behind chunking...

