Audiovisual task switching rapidly modulates sound encoding in mouse auditory cortex

Author:

Morrill Ryan J.ORCID,Bigelow JamesORCID,DeKloe Jefferson,Hasenstaub Andrea R.ORCID

Abstract

AbstractIn everyday behavior, sensory systems are in constant competition for attentional resources, but the cellular and circuit-level mechanisms of modality-selective attention remain largely uninvestigated. We conducted translaminar recordings in mouse auditory cortex (AC) during an audiovisual (AV) attention shifting task. Attending to sound elements in an AV stream reduced both pre-stimulus and stimulus-evoked spiking activity, primarily in deep layer neurons. Despite reduced spiking, stimulus decoder accuracy was preserved, suggesting improved sound encoding efficiency. Similarly, task-irrelevant probe stimuli during intertrial intervals evoked fewer spikes without impairing stimulus encoding, indicating that these attention influences generalized beyond training stimuli. Importantly, these spiking reductions predicted trial-to-trial behavioral accuracy during auditory attention, but not visual attention. Together, these findings suggest auditory attention facilitates sound discrimination by filtering sound-irrelevant spiking in AC, and that the deepest cortical layers may serve as a hub for integrating extramodal contextual information.

Publisher

Cold Spring Harbor Laboratory

Reference84 articles.

1. The Spectro-Temporal Receptive Field

2. Dynamics of Ongoing Activity: Explanation of the Large Variability in Evoked Cortical Responses

3. Spectrotemporal Processing in Spectral Tuning Modules of Cat Primary Auditory Cortex

4. Atencio, C.A. , and Schreiner, C.E. (2013). Stimulus choices for spike-triggered receptive field analysis. Handbook of Modern Techniques in Auditory Cortex. New York: Nova Biomedical 61–100.

5. Cooperative Nonlinearities in Auditory Cortical Neurons

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