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Laurie, V.-J.

Publications and source records attributed to Laurie, V.-J..

2 recordsLinked to original sources

Humans forage for reward in reinforcement learning tasks

How do we make good decisions in uncertain environments? In psychology and neuroscience, the classic view is that we calculate the value of each option, compare them, and choose the most rewarding modulo exploratory noise. An ethologist, conversely, would argue that we commit to one option until its value drops below a threshold and then explore alternatives. Because the fields use incompatible methods, it remains unclear which view better describes human decision-making. Here, we found that humans use compare-to-threshold computations in classic compare-alternative tasks. Because compare-alternative computations are central to the reinforcement-learning (RL) models typically used in the cognitive and brain sciences, we developed a novel compare-to-threshold model ("foraging"). Compared to previous RL models, the foraging model better fit participant behavior, better predicted the tendency to repeat choices, and predicted held-out participants that were almost impossible under comparealternative models. These results suggest that humans use compare-to-threshold computations in sequential decision-making.

neuroscience↗

Persistent Decision-Making in Mice, Monkeys, and Humans

Humans have the capacity to persist in behavioural policies, even in challenging environments that lack immediate reward. Persistence is the scaffold on which many higher executive functions are built. However, it remains unclear whether humans are uniquely persistent or, instead, if this capacity is widely conserved across species. To address this question, we compared humans with mice and monkeys in harmonised versions of a dynamic decision-making task. The task encouraged all species to strike a balance between persistently exploiting one policy and exploring alternative policies that could become better at any moment. Although all three species had similar strategies, we found that both primate species--humans and monkeys--were able to persist in exploitation for longer than the mice. The similarities in persistence patterns in humans and monkeys, as opposed to mice, may be related to the various ecological, neurobiological, or cognitive factors that differ systematically between these species.

animal behavior and cognition↗