In our lab, we study the learning mechanisms underlying changes in mental health. Our research focus is understanding the shifts in learning observed under two conditions that diverge from typical adult cognition: development and the influence of psychedelics. In both cases, neural plasticity is increased, reward circuitry shows functional modifications, and learning is more flexible.
| Project | What it is |
|---|---|
| ketamine-pain-dissociation | Analysis code and data for Ketamine-induced analgesia and dissociation show distinct behavioral and neural correlates (Neuropsychopharmacology, 2026; DOI, OSF) |
| con_pit | Task, anonymized data and modeling code for Adolescents flexibly adapt action selection based on controllability inferences (Learning & Memory, 2024; DOI, OSF) |
| brain_states | Code for Brain State Dynamics in Ketamine-Induced Dissociation Resemble Those in Posttraumatic Stress Disorder (Biological Psychiatry Global Open Science, 2026; DOI, OSF) |
| dev_trt | Tasks, analysis code, models and data for a test–retest reliability study of a reinforcement-learning task battery (RISK, PIT, two-step) |
Each repository links to its paper or OSF project and can be cited.