Individual differences in fear memory expression engage distinct functional brain networks
Fontana, B. D.; Hudock, J.; Rajput, N.; Kanani, D.; Luong, D.; Kenney, J. W.
Show abstract
Fearful stimuli elicit a mix of active (e.g., evasion) and passive (e.g., freezing) behaviors in a wide range of species, including zebrafish (Danio rerio). However, it is not clear if individual differences in fear responses exist and, if so, what parts of the brain may underlie such differences. To probe these questions, we developed a contextual fear conditioning paradigm for zebrafish that uses conspecific alarm substance (CAS) as an unconditioned stimulus where fish associate CAS administration with a specific tank. To identify individual differences, we collected behavioral responses from over 300 fish from four different strains (AB, TU, TL, and WIK) and both sexes. We found that fear memory behavior fell into four distinct groups: non-reactive, evaders, evading freezers, and freezers. We also found that background strain and sex influenced how fish respond to CAS, with males more likely to increase evasive behaviors than females and the TU strain more likely to be non-reactive. Finally, we performed whole-brain activity mapping to identify the brain regions that are associated with different behavioral responses. All groups exposed to the tank had strong engagement of the telencephalon, whereas regions beyond the telencephalon distinguished behavioral groups: animals that have high levels of freezing, but low levels of evasion, uniquely engage the cerebellum, preglomerular nuclei, and pretectal areas, whereas those fish that mix evasion with freezing engage the preoptic and hypothalamic areas. Taken together, these findings reveal that zebrafish exhibit individual differences in fear memory expression that are supported at the neural level by extra-telencephalic regions.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The lonely fish is not a loner fish: whole-brain mapping reveals abnormal activity in socially isolated zebrafish 97%
- Specialized neurons in the right habenula mediate response to aversive olfactory cues 94%
- Evolution of olfactory sensitivity, preferences and behavioral responses in Mexican cavefish: fish personality matters 94%
Similar papers in this journal
- Larval zebrafish display dynamic learning of aversive stimuli in a constant visual surrounding 94%
- Odor Modulates the Temporal Dynamics of Fear Memory Consolidation 92%
- Cognitive limits of larval Drosophila: Testing for conditioned inhibition, sensory preconditioning and second-order conditioning 92%
Similar papers in this journal
- Acute stress modulates social approach and social maintenance in adult zebrafish 95%
- Sounding the alarm: sex differences in rat ultrasonic vocalizations during Pavlovian fear conditioning and extinction 93%
- Plasticity of the dopaminergic phenotype and of locomotion in larval zebrafish induced by changes in brain excitability during the embryonic period 92%
"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.