Expectation-dependent stimulus selectivity in the ventral visual cortical pathway

T Tiago S. Altavini (Laboratory of Neurobiology, The Rockefeller University) M Minggui Chen (Laboratory of Neurobiology, The Rockefeller University) G Guadalupe Astorga (Laboratory of Neurobiology, The Rockefeller University) Y Yin Yan (Beijing Normal University) W Wu Li (Leibniz-Institut für Katalyse) W Winrich Freiwald (Laboratory of Neurobiology, The Rockefeller University) C Charles D. Gilbert (Laboratory of Neurobiology, The Rockefeller University)

Abstract

The hierarchical view of the ventral object recognition pathway is primarily based on feedforward mechanisms, starting from a fixed basis set of object primitives and ending on a representation of whole objects in the inferotemporal cortex. Here, we provide a different view. Rather than being a fixed “labeled line” for a specific feature, neurons are continually changing their stimulus selectivities on a moment-to-moment basis, as dictated by top–down influences of object expectation and perceptual task. Here, we also derive the selectivity for stimulus features from an ethologically curated stimulus set, based on a delayed match-to-sample task, that finds components that are informative for object recognition in addition to full objects, though the top–down effects were seen for both informative and uninformative components. Cortical areas responding to these stimuli were identified with functional MRI in order to guide placement of chronically implanted electrode arrays.

Article Details

Volume / Issue Vol. 122, Issue 13
Published April 01, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (7)

T

Tiago S. Altavini

Laboratory of Neurobiology, The Rockefeller University

M

Minggui Chen

Laboratory of Neurobiology, The Rockefeller University

G

Guadalupe Astorga

Laboratory of Neurobiology, The Rockefeller University

Y

Yin Yan

Beijing Normal University

W

Wu Li

Leibniz-Institut für Katalyse

W

Winrich Freiwald

Laboratory of Neurobiology, The Rockefeller University

C

Charles D. Gilbert

Laboratory of Neurobiology, The Rockefeller University