| Literature DB >> 31077844 |
Michael A Cohen1, Daniel D Dilks2, Kami Koldewyn3, Sarah Weigelt4, Jenelle Feather5, Alexander Je Kell5, Boris Keil6, Bruce Fischl7, Lilla Zöllei8, Lawrence Wald7, Rebecca Saxe5, Nancy Kanwisher9.
Abstract
Many studies have investigated the development of face-, scene-, and body-selective regions in the ventral visual pathway. This work has primarily focused on comparing the size and univariate selectivity of these neural regions in children versus adults. In contrast, very few studies have investigated the developmental trajectory of more distributed activation patterns within and across neural regions. Here, we scanned both children (ages 5-7) and adults to test the hypothesis that distributed representational patterns arise before category selectivity (for faces, bodies, or scenes) in the ventral pathway. Consistent with this hypothesis, we found mature representational patterns in several ventral pathway regions (e.g., FFA, PPA, etc.), even in children who showed no hint of univariate selectivity. These results suggest that representational patterns emerge first in each region, perhaps forming a scaffold upon which univariate category selectivity can subsequently develop. More generally, our findings demonstrate an important dissociation between category selectivity and distributed response patterns, and raise questions about the relative roles of each in development and adult cognition.Entities:
Mesh:
Year: 2019 PMID: 31077844 PMCID: PMC6684321 DOI: 10.1016/j.neuroimage.2019.05.010
Source DB: PubMed Journal: Neuroimage ISSN: 1053-8119 Impact factor: 6.556