Multiple Temporal and Object-Based Strategies Across Learning for a Selective Detection Task in Mice
Marrero, K.; Aruljothi, K.; Zareian, B.; Zhang, Z.; Zagha, E.
Show abstract
New tasks are often learned in stages with each stage reflecting a different learning challenge. Accordingly, each learning stage is likely mediated by distinct neuronal processes. And yet, most rodent studies of the neuronal correlates of goal-directed learning focus on individual outcome measures and individual brain regions. Here, we longitudinally studied mice from naive to expert performance in a head-fixed, operant conditioning whisker discrimination task. In addition to tracking the primary behavioral outcome of stimulus discrimination, we tracked and compared an array of object-based and temporal-based behavioral measures. These behavioral analyses identify multiple, partially overlapping learning stages in this task, consistent with initial response implementation, early stimulus-response generalization, and late response inhibition. To begin to understand the neuronal foundations of these learning processes, we performed widefield Ca2+ imaging of dorsal neocortex throughout learning and correlated behavioral measures with neuronal activity. We found distinct and widespread correlations between neocortical activation patterns and various behavioral measures. For example, improvements in sensory discrimination correlated with target stimulus evoked activations of licking-related cortices along with distractor stimulus evoked global cortical suppression. Our study reveals multidimensional learning for a simple goal-directed learning task and generates hypotheses for the neuronal modulations underlying these various learning processes.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Altered heterosynaptic plasticity impairs visual discrimination learning in adenosine A1 receptor knockout mice 95%
- Whisking asymmetry signals motor preparation and the behavioral state of mice 95%
- Impaired refinement of kinematic variability in Huntington disease mice on an automated home-cage forelimb motor task 95%
Similar papers in this journal
- Parameter-dependent shift from rational to irrational decisions in mice 96%
- Divergent encoding of active avoidance behavior in corticostriatal and corticolimbic projections 95%
- Multi-domain cognitive assessment of male mice reveals whole body exposure to space radiation is not detrimental to high-level cognition and actually improves pattern separation. 95%
Similar papers in this journal
- Dopamine Release Plateau and Outcome Signals in Dorsal Striatum Contrast with Classic Reinforcement Learning Formulations 96%
- The behavioral signature of stepwise learning strategy and its neural correlate in the basal forebrain 95%
- Molecular layer interneurons in the cerebellum encode for valence in associative learning 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.