4.8 Article

An anterior temporal face patch in human cortex, predicted by macaque maps

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.0807304106

Keywords

face processing; fMRI; inferotemporal cortex; macaque-human homology

Funding

  1. National Institutes of Health [R01 MH67529, R01 EY017081]
  2. Martinos Center for Biomedical Imaging, National Center for Research Resources [P41RR14075]
  3. Mental Illness and Neuroscience Discovery Institute

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Increasing evidence suggests that primate visual cortex has a specialized architecture for processing discrete object categories such as faces. Human fMRI studies have described a localized region in the fusiform gyrus [ the fusiform face area (FFA)] that responds selectively to faces. In contrast, in nonhuman primates, electrophysiological and fMRI studies have instead revealed 2 apparently analogous regions of face representation: the posterior temporal face patch ( PTFP) and the anterior temporal face patch ( ATFP). An earlier study suggested that human FFA is homologous to the PTFP in macaque. However, in humans, no obvious homologue of the macaque ATFP has been demonstrated. Here, we used fMRI to map face-selective sites in both humans and macaques, based on equivalent stimuli in a quantitative topographic comparison. This fMRI evidence suggests that such a face-selective area exists in human anterior inferotemporal cortex, comprising the apparent homologue of the fMRI-defined ATFP in macaques.

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