Search bioRxiv⌕ Search

Biology subjects

Mayo, L. M.

Publications and source records attributed to Mayo, L. M..

2 recordsLinked to original sources

Shared Latent Decision Strategies Underlie Reward-Guided Behavior Across Species

Adaptive behavior requires that organisms learn which actions are rewarded and to update action selection when the environment changes. While human and non-human animals exhibit adaptive behavior, whether apparently similar behavior reflects common decision strategies remains unclear. Probabilistic reversal learning provides a cross-species assay of reward-guided choice, yet standard metrics such as accuracy or reward rate can obscure underlying strategies that generate choices. Here, we applied parallel probabilistic reversal learning tasks in mice and humans and used a generalized linear model-hidden Markov model to infer latent decision strategies from trial-by-trial behavior. Across species, choices were organized into stable behavioral states with differing reliance on choice history, reward history, and response bias. Among these latent states, we identify a conserved reward-learning strategy in mice and humans characterized by the greatest feedback sensitivity, reward efficiency, and adaptation after reversal. Simulating choice behavior using state-specific decision policies reproduced the empirical hierarchy of performance, confirming that the latent states capture meaningful behavioral strategies. Although mice and humans differ in the temporal dynamics of reward learning, both species ultimately converge on the same optimized strategy. These findings identify a conserved latent reward-learning strategy in mice and humans, defining a translational framework for studying how adaptive decision-making is shaped by task experience, stress, affective processes, and neural circuit function.

neuroscience↗

PREFRONTAL CORRELATES OF FEAR GENERALIZATION DURING ENDOCANNABINOID DEPLETION

Maladaptive fear generalization is one of the hallmarks of trauma-related disorders. The endocannabinoid 2-arachidonoylglycerol (2-AG) is crucial for modulating anxiety, fear, and stress adaptation but its role in balancing fear discrimination versus generalization is not known. To address this, we used a combination of plasma endocannabinoid measurement and neuroimaging from a childhood maltreatment exposed and non-exposed mixed population combined with human and rodent fear conditioning models. Here we show that 2-AG levels are inversely associated with fear generalization at the behavioral level in both mice and humans. In mice, 2-AG depletion increases the proportion of neurons, and the similarity between neuronal representations, of threat-predictive and neutral stimuli within prelimbic prefrontal cortex ensembles. In humans, increased dorsolateral prefrontal cortical-amygdala resting state connectivity is inversely correlated with fear generalization. These data provide convergent cross-species evidence that 2-AG is a key regulator of fear generalization and suggest 2-AG deficiency could represent a trauma-related disorder susceptibility endophenotype.

neuroscience↗