The naive brain detects face-to-face biological motion
Anastasia Morandi-Raikova1, Mirko Zanon1, Giorgio Vallortigara1
1Center for Mind/Brain Sciences, University of Trento, Rovereto, Italy.
Iscience
|July 19, 2026
Summary
This study reveals that detecting social interactions in chicks involves higher brain regions, not just basic motion detection circuits. This finding advances our understanding of social cognition and neural processing.
Area of Science:
- Neuroscience
- Comparative Cognition
- Social Cognition
Background:
- Vertebrates possess innate sensitivity to animacy cues, processed by subpallial circuits in the social behavior network (SBN).
- Neural mechanisms differentiating animate motion detection from social relation recognition are not fully understood.
Purpose of the Study:
- Investigate brain regions activated by observing social interactions in visually naive domestic chicks.
- Differentiate neural processing of animate motion versus socially meaningful interactions.
Main Methods:
- Utilized point-light displays of hens in face-to-face and back-to-back configurations.
- Measured immediate early-gene expression to identify activated brain regions.
- Focused on visually naive domestic chicks as a model system.
Main Results:
- Selective immediate early-gene expression was observed in the nidopallium caudolaterale (homologous to mammalian prefrontal cortex).
- No significant activation was found in subpallial SBN areas like the nucleus taeniae of the amygdala and septum.
- This pattern suggests a dissociation in neural processing based on the complexity of social cues.
Conclusions:
- Basic sensitivity to animate motion may involve evolutionarily ancient subpallial circuits.
- Detection of socially relevant relations appears to engage higher-order pallial processing.
- The nidopallium caudolaterale plays a crucial role in processing complex social interactions.
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