Late cortical dynamics mediate numerosity illusions induced by symmetry
- elisacastaldi
- 12 ago
- Tempo di lettura: 1 min
Benedetto A., Arrighi R., Castaldi E.
Commun Biol (2026). https://doi.org/10.1038/s42003-026-10746-3 https://www.nature.com/articles/s42003-026-10746-3#citeas
Numerosity perception enables us to quickly estimate the number of objects in a visual scene, a fundamental skill supporting efficient interaction with the environment. In this study, we tracked how the human brain transforms physical inputs into numerical percepts. Using EEG, we characterized the temporal dynamics of how numerosity-related signals are integrated with spatial configuration cues that shape perception. We leveraged on a visual illusion in which dot arrays appear less numerous when arranged symmetrically rather than randomly. Participants viewed dot arrays of varying physical or perceived numerosity, illusorily altered by the dots’ spatial arrangement. Both univariate and multivariate analyses revealed that physical numerosity was decodable from occipitoparietal electrodes as early as ~50 ms after stimulus onset, independently of low-level features such as convex hull, density, individual and total item area. Spatial arrangement was represented later, from ~150 ms, and perceived numerosity, biased by symmetry-induced grouping, emerged at a similar latency. These results indicate that early neural signals encode physical numerosity directly, whereas the symmetry-induced underestimation arises from late grouping processes, such as those involved in incremental grouping, supporting object segmentation.
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