bioRxiv · 10.64898/2026.09.02.748903
Mus musculus mice self-organize existing behaviors into structured bouts as they become expert hunters.
Abstract
In the wild, a mouse must flexibly perform multiple computations at once, rapidly navigating, sampling its environment, forming and using memories, and balancing internal needs. Capturing the self-paced, low-repetition, complex nature of decision making in the wild while preserving the experimental control needed to interpret its process remains a challenge. Here we show that lab mice, without food restriction, learn to forage for hidden resources cued by ambiguous sounds in a dynamic environment by spatiotemporally reorganizing their existing behavioral repertoire. Using a novel closed-loop assay, we required mice to sit still to receive informative but hard-to-localize sound cues emanating from one correct location they must find, out of 157 possible locations in a large arena. With experience, mice become efficient hunters. Efficient hunting cannot be explained by an increase in a particular behavioral module, but instead, mice reorganize existing behaviors into clustered bouts of high-quality sampling and site-checking. Looking forward, this work establishes an approach for studying the neural, molecular, and evolutionary basis of naturalistic decision-making in mice.
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Shettigar, N., Zhang, L.-Q., Teran, J., Schuster, L., Sohn, A., Branson, K., Dennis, E. J.. 2026-09-07. Mus musculus mice self-organize existing behaviors into structured bouts as they become expert hunters.. https://doi.org/10.64898/2026.09.02.748903
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