Memory on ice: spatial memory is retained over a 9-month hibernation period in Columbian ground squirrels

Abstract Memory allows animals to utilize ecologically relevant information, yet whether it endures through prolonged metabolic shutdown is poorly understood. We tested spatial memory retention in a long-term, free-living hibernator, the Columbian ground squirrel (Urocitellus columbianus), using a field-based spatial maze over two consecutive active seasons. Ten individuals were tested before and after a 9-month hibernation period and compared with eight naive individuals. Maze-solving performances—time to exit, path sinuosity and navigational errors—were analysed over 10 consecutive trials using Bayesian nonlinear learning curves to separate retained memory from relearning. Strikingly, post-hibernation individuals with prior exposure to the task significantly outperformed naive individuals by 41–98% across all metrics, with initial performance after hibernation approaching pre-hibernation asymptotes. We show that spatial memory survives prolonged hibernation in the wild, supporting the hypothesis that neural plasticity during hibernation reflects adaptive retention rather than memory loss.

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Publication Details

Journal
Biology Letters
Published
2026-10-07
DOI
https://doi.org/10.1098/rsbl.2026.0220
Primary Topic
Memory and Neural Mechanisms
Type
article
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article

Memory on ice: spatial memory is retained over a 9-month hibernation period in Columbian ground squirrels

Lauriane Kühn, F. Stephen Dobson, Claire Saraux, Vincent A. Viblanc et al.
Biology Letters
Memory and Neural Mechanisms
article

Memory on ice: spatial memory is retained over a 9-month hibernation period in Columbian ground squirrels

Lauriane Kühn, F. Stephen Dobson, Claire Saraux, Vincent A. Viblanc, Anaïs Beauvieux, Ashley R. Olson, Meagan Dewar, Jeremy Werner, Samuel Laporte
article en

Abstract

Abstract Memory allows animals to utilize ecologically relevant information, yet whether it endures through prolonged metabolic shutdown is poorly understood. We tested spatial memory retention in a long-term, free-living hibernator, the Columbian ground squirrel (Urocitellus columbianus), using a field-based spatial maze over two consecutive active seasons. Ten individuals were tested before and after a 9-month hibernation period and compared with eight naive individuals. Maze-solving performances—time to exit, path sinuosity and navigational errors—were analysed over 10 consecutive trials using Bayesian nonlinear learning curves to separate retained memory from relearning. Strikingly, post-hibernation individuals with prior exposure to the task significantly outperformed naive individuals by 41–98% across all metrics, with initial performance after hibernation approaching pre-hibernation asymptotes. We show that spatial memory survives prolonged hibernation in the wild, supporting the hypothesis that neural plasticity during hibernation reflects adaptive retention rather than memory loss.

Biology LettersVol. 22(10)
École Normale Supérieure de Lyon (FR), Centre National de la Recherche Scientifique (FR), Federation University (AU), R&G Associates (GB), Université de Strasbourg (FR), Auburn University (US)
Openalex Percentile: Top 12%
Memory and Neural Mechanisms
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Memory on ice: spatial memory is retained over a 9-month hibernation period in Columbian ground squirrels — Lauriane Kühn, F. Stephen Dobson, et al. · Biology Letters (2026) | TGRS Research Map | TGRS