TY - JOUR
T1 - Similarity judgments and cortical visual responses reflect different properties of object and scene categories in naturalistic images
AU - King, Marcie L.
AU - Groen, Iris I.A.
AU - Steel, Adam
AU - Kravitz, Dwight J.
AU - Baker, Chris I.
N1 - We thank Susan Wardle and Martin Hebart for helpful discussion and comments on earlier versions of this manuscript, Ed Silson for help with the ROI definitions, and Steven Scholte for help implementing the DNN analyses. This research was supported by the Intramural Research Program of the US National Institute of Mental Health ( ZIAMH 002909 ), Clinical Study Protocol 93-M-0170, NCT00001360. MLK was also supported by the National Institutes of Health Predoctoral Training Grant ( T32-GM108540 ). The authors declare no competing financial interests.
PY - 2019/8/15
Y1 - 2019/8/15
N2 - Numerous factors have been reported to underlie the representation of complex images in high-level human visual cortex, including categories (e.g. faces, objects, scenes), animacy, and real-world size, but the extent to which this organization reflects behavioral judgments of real-world stimuli is unclear. Here, we compared representations derived from explicit behavioral similarity judgments and ultra-high field (7T)fMRI of human visual cortex for multiple exemplars of a diverse set of naturalistic images from 48 object and scene categories. While there was a significant correlation between similarity judgments and fMRI responses, there were striking differences between the two representational spaces. Behavioral judgements primarily revealed a coarse division between man-made (including humans)and natural (including animals)images, with clear groupings of conceptually-related categories (e.g. transportation, animals), while these conceptual groupings were largely absent in the fMRI representations. Instead, fMRI responses primarily seemed to reflect a separation of both human and non-human faces/bodies from all other categories. Further, comparison of the behavioral and fMRI representational spaces with those derived from the layers of a deep neural network (DNN)showed a strong correspondence with behavior in the top-most layer and with fMRI in the mid-level layers. These results suggest a complex relationship between localized responses in high-level visual cortex and behavioral similarity judgments – each domain reflects different properties of the images, and responses in high-level visual cortex may correspond to intermediate stages of processing between basic visual features and the conceptual categories that dominate the behavioral response.
AB - Numerous factors have been reported to underlie the representation of complex images in high-level human visual cortex, including categories (e.g. faces, objects, scenes), animacy, and real-world size, but the extent to which this organization reflects behavioral judgments of real-world stimuli is unclear. Here, we compared representations derived from explicit behavioral similarity judgments and ultra-high field (7T)fMRI of human visual cortex for multiple exemplars of a diverse set of naturalistic images from 48 object and scene categories. While there was a significant correlation between similarity judgments and fMRI responses, there were striking differences between the two representational spaces. Behavioral judgements primarily revealed a coarse division between man-made (including humans)and natural (including animals)images, with clear groupings of conceptually-related categories (e.g. transportation, animals), while these conceptual groupings were largely absent in the fMRI representations. Instead, fMRI responses primarily seemed to reflect a separation of both human and non-human faces/bodies from all other categories. Further, comparison of the behavioral and fMRI representational spaces with those derived from the layers of a deep neural network (DNN)showed a strong correspondence with behavior in the top-most layer and with fMRI in the mid-level layers. These results suggest a complex relationship between localized responses in high-level visual cortex and behavioral similarity judgments – each domain reflects different properties of the images, and responses in high-level visual cortex may correspond to intermediate stages of processing between basic visual features and the conceptual categories that dominate the behavioral response.
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U2 - 10.1016/j.neuroimage.2019.04.079
DO - 10.1016/j.neuroimage.2019.04.079
M3 - Article
C2 - 31054350
AN - SCOPUS:85065390290
SN - 1053-8119
VL - 197
SP - 368
EP - 382
JO - NeuroImage
JF - NeuroImage
ER -