Related Experiment Video
Updated: Jun 4, 2026

A System for Tracking the Dynamics of Social Preference Behavior in Small Rodents
Published on: November 21, 2019
Individual preferences and social interactions determine the aggregation of woodlice
Cédric Devigne1, Pierre Broly, Jean-Louis Deneubourg
1Université Lille Nord de France, Lille, France. cedric.devigne@icl-lille.fr
Background:
The aggregation of woodlice in dark and moist places is considered an adaptation to land life and most studies are focused on its functionality or on the behavioural mechanisms related to the individual's response to abiotic factors. Until now, no clear experimental demonstration was available about aggregation resulting from inter-attraction between conspecifics.
Methodology/Main Findings:
We present the dynamics of aggregation, not previously described in detail in literature, as being independent of the experimental conditions: homogeneous and heterogeneous environments with identical or different shelters. Indeed whatever these conditions, the aggregation is very quick. In less than 10 minutes more than 50% of woodlice were aggregated in several small groups in the homogeneous environment or under shelters in the heterogeneous environment. After this fast aggregation, woodlice progressively moved into a single aggregate or under one shelter.
Conclusions/Significance:
Here we show for the first time that aggregation in woodlice implies a strong social component and results from a trade-off between individual preferences and inter-attraction between individuals. Moreover, our results reveal that the response to the heterogeneities affects only the location of the aggregates and not the level of aggregation, and demonstrate the strong inter-attraction between conspecifics which can outweigh individual preferences. This inter-attraction can lead to situations that could seem sub-optimal.
Related Concept Videos
Causes of Social Behavior III: Biological and Environmental Influences
Factors Influencing Attraction V: Social Skills
Social Loafing
Woodward–Hoffmann Selection Rules and Microscopic Reversibility
Relationship Formation
Desirable Characteristics in Others

