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Updated: Oct 18, 2025

The Three-Chamber Choice Behavioral Task using Zebrafish as a Model System
Published on: April 14, 2021
Zebrafish capable of generating future state prediction error show improved active avoidance behavior in virtual
Makio Torigoe1, Tanvir Islam1,2, Hisaya Kakinuma1,2
1Lab. for Neural Circuit Dynamics of Decision Making, RIKEN Center for Brain Science, Wako, Saitama, 351-0198, Japan.
Zebrafish learn to avoid threats by maximizing rewards and minimizing surprises. A specific brain ensemble helps them escape more efficiently by detecting and acting on prediction errors, showing flexible goal-directed behavior.
Area of Science:
- Neuroscience
- Animal Behavior
- Decision Making
Background:
- Animals employ reward maximization and surprise minimization for decision-making.
- Neural mechanisms underlying these principles and their behavioral manifestations remain largely unknown.
Purpose of the Study:
- Investigate how reward value maximization and surprise minimization are represented in the brain and behavior.
- Examine neural ensembles in zebrafish dorsal pallium during active avoidance learning.
Main Methods:
- Utilized a closed-loop virtual reality system for training adult zebrafish.
- Analyzed neural activity in the dorsal pallium during active avoidance tasks.
- Correlated neural ensemble activation with behavioral escape efficiency.
Main Results:
- Identified neural ensembles in the dorsal pallium that assign rules to environmental cues (wall colors).
- Discovered a distinct neural ensemble activated by discrepancies between perceived and predicted scenery (prediction error).
- Zebrafish with the prediction error ensemble exhibited more efficient escape behavior than those with only rule-assigning ensembles.
Conclusions:
- Zebrafish utilize both reward maximization and surprise minimization principles in goal-directed behavior.
- The prediction error ensemble enhances escape efficiency by guiding actions to minimize discrepancies.
- Behavioral outcomes are influenced by the specific combination of cognitive principles employed by the animal.
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