Related Experiment Video
Updated: Mar 23, 2026

Assessment of Social Interaction Behaviors
Published on: February 25, 2011
Absolute, not relative brain size correlates with sociality in ground squirrels
Jan Matějů1, Lukáš Kratochvíl2, Zuzana Pavelková2
1Museum Karlovy Vary, Pod Jelením skokem 30, Karlovy Vary 360 01, Czech Republic.
Abstract:
The social brain hypothesis (SBH) contends that cognitive demands associated with living in cohesive social groups favour the evolution of large brains. Although the correlation between relative brain size and sociality reported in various groups of birds and mammals provides broad empirical support for this hypothesis, it has never been tested in rodents, the largest mammalian order. Here, we test the predictions of the SBH in the ground squirrels from the tribe Marmotini. These rodents exhibit levels of sociality ranging from solitary and single-family female kin groups to egalitarian polygynous harems but feature similar ecologies and life-history traits. We found little support for the association between increase in sociality and increase in relative brain size. Thus, sociality does not drive the evolution of encephalization in this group of rodents, a finding inconsistent with the SBH. However, body mass and absolute brain size increase with sociality. These findings suggest that increased social complexity in the ground squirrels goes hand in hand with larger body mass and brain size, which are tightly coupled to each other.
Related Concept Videos
Biological Influences on Intelligence
Causes of Social Behavior III: Biological and Environmental Influences
Scientific Nature of Social Psychology
Environmental Influences on Intelligence

