
Integration and Competition Between Space and Time in the Hippocampus
Uncovering the trade-off between space and time in the hippocampus: how single neurons competitively balance these dimensions.

Uncovering the trade-off between space and time in the hippocampus: how single neurons competitively balance these dimensions.

This review explores how theta oscillations guide the spontaneous emergence of ring attractors in the hippocampus.

An ICLR 2025 paper proposing that range, not just statistical independence, is the key factor that determines whether neural representations are modular or mixed.

A presentation of the 2025 Science paper shows how the Lateral Entorhinal Cortex (LEC) encodes time via two mechanisms. A continuous 'slow drift' and abrupt 'shifts' at event boundaries.

Hippocampal memory is compositional, and performs consolidation primarily through replay, allowing for zero-shot generalization and the construction of future behavior

The hippocampus learns by forming an "orthogonalized state machine," enabling contextual separation and flexible learning.

Understand how the dimensionality of abstract representation in the brain supports generalization

The topic of this year's NABI symposium, we explore how hippocampal circuits reveal the principles behind flexible, context-dependent memory.