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Simultaneous Recording of Electroretinography and Visual Evoked Potentials in Anesthetized Rats
Published on: July 1, 2016
When vision listens: auditory predictive processing in primary visual cortex of anesthetized rats
Jazmín S Sánchez1, Ana B Lao-Rodríguez1, David Pérez-González2
1Cognitive and Auditory Neuroscience Laboratory (CANELAB), Institute of Neuroscience of Castilla and Leon (INCYL), 37007 Salamanca, Spain; Institute for Biomedical Research of Salamanca (IBSAL), University of Salamanca, 37007 Salamanca, Spain; Department of Cell Biology and Pathology, Faculty of Medicine, University of Salamanca, 37007 Salamanca, Spain.
Abstract:
Primary visual cortex (V1), traditionally considered a purely visual area, is increasingly recognized for its role in multisensory processing. According to predictive coding theory, cortical circuits generate expectations about sensory inputs (predictions) and signal deviations from them (prediction errors). To test whether V1 encodes auditory prediction errors, we recorded neuronal activity and LFP from layers IV-VI in urethane-anesthetized rats during auditory oddball and no-repetition control sequences. Recorded neurons from layers V-VI in our sample responded to tones, with many showing stronger responses to deviant than standard stimuli. Deviant responses primarily reflected prediction error rather than repetition suppression and were enhanced under temporally uncertain (random) conditions. Layer V neuronal responses were faster and more phasic, while in layer VI were broader and more sustained. These results reveal that infragranular circuits in V1 encode auditory prediction errors and contextual regularities, positioning V1 as a multimodal inference hub within predictive hierarchy.
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