Optogenetically induced low-frequency correlations impair perception

Author:

Nandy Anirvan12ORCID,Nassi Jonathan J1,Jadi Monika P23,Reynolds John1

Affiliation:

1. Systems Neurobiology Laboratories, The Salk Institute for Biological Studies, La Jolla, United States

2. Department of Neuroscience, Yale University, New Haven, United States

3. Department of Psychiatry, Yale University, New Haven, United States

Abstract

Deployment of covert attention to a spatial location can cause large decreases in low-frequency correlated variability among neurons in macaque area V4 whose receptive-fields lie at the attended location. It has been estimated that this reduction accounts for a substantial fraction of the attention-mediated improvement in sensory processing. These estimates depend on assumptions about how population signals are decoded and the conclusion that correlated variability impairs perception, is purely hypothetical. Here we test this proposal directly by optogenetically inducing low-frequency fluctuations, to see if this interferes with performance in an attention-demanding task. We find that low-frequency optical stimulation of neurons in V4 elevates correlations among pairs of neurons and impairs the animal’s ability to make fine sensory discriminations. Stimulation at higher frequencies does not impair performance, despite comparable modulation of neuronal responses. These results support the hypothesis that attention-dependent reductions in correlated variability contribute to improved perception of attended stimuli.

Funder

Brain and Behavior Research Foundation

National Institutes of Health

NIH Blueprint for Neuroscience Research

Gatsby Charitable Foundation

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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