State-dependent geometry of population activity in rat auditory cortex

Author:

Kobak Dmitry12ORCID,Pardo-Vazquez Jose L13ORCID,Valente Mafalda1ORCID,Machens Christian K1ORCID,Renart Alfonso1ORCID

Affiliation:

1. Champalimaud Center for the Unknown, Lisbon, Portugal

2. Institute for Ophthalmic Research, University of Tübingen, Tübingen, Germany

3. Neuroscience and Motor Control Group, University of A Coruña, Coruña, Spain

Abstract

The accuracy of the neural code depends on the relative embedding of signal and noise in the activity of neural populations. Despite a wealth of theoretical work on population codes, there are few empirical characterizations of the high-dimensional signal and noise subspaces. We studied the geometry of population codes in the rat auditory cortex across brain states along the activation-inactivation continuum, using sounds varying in difference and mean level across the ears. As the cortex becomes more activated, single-hemisphere populations go from preferring contralateral loud sounds to a symmetric preference across lateralizations and intensities, gain-modulation effectively disappears, and the signal and noise subspaces become approximately orthogonal to each other and to the direction corresponding to global activity modulations. Level-invariant decoding of sound lateralization also becomes possible in the active state. Our results provide an empirical foundation for the geometry and state-dependence of cortical population codes.

Funder

Fundação Bial

Federal Ministry of Education and Research

Human Frontier Science Program

Fundação para a Ciência e a Tecnologia

Champalimaud Foundation

Simons Foundation

National Institutes of Health

European Union Seventh Framework Programme

Publisher

eLife Sciences Publications, Ltd

Subject

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

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