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Catecholamine precursor modulation of human exploration: Evidence from a large gender-balanced sample.

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Tyrosine supplementation improved reinforcement learning by enhancing value-driven choices and reducing exploration. This suggests Tyrosine optimizes decision-making by stabilizing behavior for better reward accumulation.

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Area of Science:

  • Neuroscience
  • Cognitive Psychology
  • Computational Psychiatry

Background:

  • The catecholamine precursor Tyrosine is associated with cognitive enhancement.
  • Its specific effects on decision-making and reinforcement learning, processes modulated by catecholamines, are not well understood.

Purpose of the Study:

  • To investigate the impact of a single 2g dose of Tyrosine on reinforcement learning and exploration.
  • To explore the computational mechanisms underlying Tyrosine's effects on decision-making.

Main Methods:

  • A within-subjects, preregistered study with 63 participants.
  • Assessment of reinforcement learning and exploration following Tyrosine administration.
  • Computational modeling using established reinforcement learning models.

Main Results:

  • Tyrosine significantly improved reinforcement learning performance.
  • Computational modeling indicated increased value-driven exploitation and reduced directed exploration under Tyrosine.
  • Further analysis revealed reductions in value-independent perseveration.

Conclusions:

  • Tyrosine enhances reinforcement learning by increasing exploitation and reducing exploration, stabilizing choice patterns to optimize reward accumulation.
  • These findings highlight Tyrosine's role in modulating catecholamine-influenced computational mechanisms relevant to decision-making.