Endogenous fluctuations in the dopaminergic midbrain drive behavioral choice variability.
basic_science · Level V
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- Record sourced from PubMed, PMID 31451671.
- Also identified by DOI 10.1073/pnas.1900872116 and PMC identifier 6744888.
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Abstract
Human behavior is surprisingly variable, even when facing the same problem under identical circumstances. A prominent example is risky decision making. Economic theories struggle to explain why humans are so inconsistent. Resting-state studies suggest that ongoing endogenous fluctuations in brain activity can influence low-level perceptual and motor processes, but it remains unknown whether endogenous fluctuations also influence high-level cognitive processes including decision making. Here, using real-time functional magnetic resonance imaging, we tested whether risky decision making is influenced by endogenous fluctuations in blood oxygenation level-dependent (BOLD) activity in the dopaminergic midbrain, encompassing ventral tegmental area and substantia nigra. We show that low prestimulus brain activity leads to increased risky choice in humans. Using computational modeling, we show that increased risk taking is explained by enhanced phasic responses to offers in a decision network. Our findings demonstrate that endogenous brain activity provides a physiological basis for variability in complex human behavior.
Medical subject headings
- Choice Behavior
- Cognition
- Risk-Taking
- Substantia Nigra
- Ventral Tegmental Area