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Time encoding migrates from prefrontal cortex to dorsal striatum during learning of a self-timed response duration
Gabriela C Tunes1, Eliezyer Fermino de Oliveira1, Estevão U P Vieira1
1Center for Mathematics, Computing, and Cognition, Universidade Federal do ABC, Sao Bernardo do Campo, Brazil.
Elife
|September 28, 2022
Summary
Researchers studied how the brain learns to time intervals, finding distinct roles for the medial prefrontal cortex in early learning and the dorsal striatum in proficient timing performance.
Area of Science:
- Neuroscience
- Cognitive Science
- Behavioral Neuroscience
Background:
- Understanding how the brain processes time intervals is crucial, yet neural activity during learning is understudied.
- Traditional timing tasks require extensive training, limiting investigations into early learning stages.
Purpose of the Study:
- To investigate the evolution of time encoding during the learning of a 1.5-second interval.
- To differentiate the roles of the medial prefrontal cortex and dorsal striatum in temporal learning.
Main Methods:
- Developed a novel, single-session training protocol for rats to achieve proficient timing performance.
- Utilized pharmacological experiments and machine-learning algorithms to analyze neural activity.
- Examined time encoding in the medial prefrontal cortex and dorsal striatum.
Main Results:
- Demonstrated a double dissociation in brain area engagement during temporal learning.
- The medial prefrontal cortex showed involvement in early learning stages.
- The dorsal striatum became engaged as animals reached proficient timing performance.
Conclusions:
- The medial prefrontal cortex and dorsal striatum exhibit distinct, temporally separated roles in learning to time intervals.
- This finding provides insights into the neural mechanisms underlying temporal learning and skill acquisition.

