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Jaskir, A.

Publications and source records attributed to Jaskir, A..

2 recordsLinked to original sources

Behavioral Opportunism and Altered Dopamine Dynamics in Mice Exposed to Early Life Adversity

Early life adversity (ELA) confers risk for reward-related psychopathologies. These risks may stem from adaptations optimizing reward pursuit in anticipation of unreliable, resource poor environments. One rational adaptation to poor, unreliable environments is Behavioral Opportunism: updating expectations more slowly and acting vigorously only when reward is immediately available. To systematically test the impact of ELA on behavioral strategies and underlying reward processing mechanisms, we exposed mice to resource restriction (limited bedding and nesting materials for 7 days) to manipulate the reliability and quality of early life care. Subsequently, we tested adults reward learning and decision making in a two-arm bandit task and recorded dopamine signaling using dLight1.2 fiber photometry in the nucleus accumbens core. Exposure to ELA led to poorer choice discrimination, impaired learning, and decreased adaptation to changes in reward availability. Furthermore, ELA mice were slower to choose between levers but were faster to retrieve immediately available rewards when delivered, consistent with a strategy of behavioral opportunism. Dopamine signaling predicted behavior in both rearing conditions, and its fluctuations were strongly predictive of faster retrieval in ELA mice and an increased likelihood of choice repetition, implying that aberrant dopamine signals underlie slowed learning and vigorous action for immediately available rewards. To understand key features of maternal interactions driving these effects, we used home cage video monitoring to quantify maternal behaviors, continuously, across early life. We found that specific experiential outcomes, such as maternal kicking, intensified behavioral opportunism in adults, predicting poorer bandit task performance beyond the group effect of ELA. Behavioral opportunism provides an explanatory framework for interpreting altered reward processing and reward pursuit in adulthood for individuals exposed to ELA.

animal behavior and cognition↗

On the normative advantages of dopamine and striatal opponency for learning and choice

The basal ganglia (BG) contribute to reward-driven behavior, but it is unclear why such behavior should rely on notoriously complex circuitry involving opponent striatal pathways. Dopamine (DA) nonlinearly modulates activity and plasticity in the BG and is itself dynamically modulated across tasks. We develop the OpAL* model to assess the normative advantages of such circuitry. In OpAL*, dynamic DA modulation differentially amplifies the striatal pathway most tuned to the accumulated history of positive or negative outcomes. This efficient coding mechanism avoids a vexing explore-exploit tradeoff that plagues traditional RL models in sparse reward environments. OpAL* exhibits robust advantages over alternative models across a range of environments, particularly with sparse reward. These advantages depend on opponent and nonlinear Hebbian plasticity mechanisms previously thought to be pathological. Finally, OpAL* captures risky choice patterns arising from DA and environmental manipulations across species, suggesting that they result from a normative biological mechanism. Everybody wants the most they can possibly get For the least they can possibly do - Todd Snider, "Easy Money"

neuroscience↗