Learning Enhances Sensory and Multiple Non-sensory Representations in Primary Visual Cortex

Marius Pachitariu, Maneesh Sahani, Julija Krupic, Marius Bauža, Adil G. Khan, Jasper Poort, Thomas D. Mrsic‐Flogel, Sonja B. Hofer, Georg B. Keller, Ivana Oršolić, Abdellatif Nemri
2015-06-01

SCID:  54.1/zcgjd8vc
We determined how learning modifies neural representations in primary visual cortex (V1) during acquisition of a visually guided behavioral task. We imaged the activity of the same layer 2/3 neuronal populations as mice learned to discriminate two visual patterns while running through a virtual corridor, where one pattern was rewarded. Improvements in behavioral performance were closely associated with increasingly distinguishable population-level representations of task-relevant stimuli, as a result of stabilization of existing and recruitment of new neurons selective for these stimuli. These effects correlated with the appearance of multiple task-dependent signals during learning: those that increased neuronal selectivity across the population when expert animals engaged in the task, and those reflecting anticipation or behavioral choices specifically in neuronal subsets preferring the rewarded stimulus. Therefore, learning engages diverse mechanisms that modify sensory and non-sensory representations in V1 to adjust its processing to task requirements and the behavioral relevance of visual stimuli.
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2015-06-01
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Marius Pachitariu
Maneesh Sahani
Julija Krupic
Marius Bauža
Adil G. Khan
Jasper Poort
Thomas D. Mrsic‐Flogel
Sonja B. Hofer
Georg B. Keller
Ivana Oršolić
Abdellatif Nemri
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