Encoding models uncover fine-grained feature selectivity for bodies, hands and tools
Cortinovis, D.; Hebart, M.; Bracci, S.
Show abstract
Category-selective areas in the occipitotemporal cortex (OTC) are typically characterized by broad tuning, yet neuroimaging suggests a finer-grained organization reflecting distinct computational roles. We combined image-level fMRI with artificial neural network (ANN)-based encoding models to investigate the selectivity and feature sensitivity of category-selective areas in ventral and lateral OTC. Using densely sampled fMRI data in three participants across six sessions, we identified functional dissociations between body, hand, and tool responses at the individual image level. Area-specific encoding models accurately predicted responses to millions of novel images, maintaining clear category preferences. Importantly, comparisons between models trained on areas selective for the same category revealed distinct feature sensitivities consistent with the areas anatomical location and hemispheric lateralization. These findings provide evidence for fine-grained specialization within OTC and demonstrate how ANN-based encoding models can uncover the computational, feature-level basis of category selectivity.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Investigating action topography in visual cortex and deep artificial neural networks 99%
- Object representations in the human brain reflect the co-occurrence statistics of vision and language 98%
- Differential spatial computations in ventral and lateral face-selective regions are scaffolded by structural connections 97%
Similar papers in this journal
- Spatial processing of limbs reveals the center-periphery bias in high level visual cortex follows a nonlinear topography 98%
- Dissociable contributions of the medial parietal cortex to recognition memory 97%
- Brief encounters with real objects modulate medial parietal but not occipitotemporal cortex 96%
Similar papers in this journal
Similar papers in this journal
- Cortical recycling in high-level visual cortex during childhood development 96%
- White matter connections of human ventral temporal cortex are organized by cytoarchitecture, eccentricity, and category-selectivity from birth 95%
- Electrophysiological signatures of veridical head direction in humans 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.