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Biology subjects

Stanley, J. M.

Publications and source records attributed to Stanley, J. M..

2 recordsLinked to original sources

Neural and Behavioral Responses to Social Norm Violations Across Trust and Fairness Contexts

Trust and fairness sustain cooperation, but social neuroscience has largely studied violations of these social norms in isolation. We asked whether neural sensitivity to betrayal carries forward into the evaluation of unfairness in a separate social exchange. In 132 adults who completed fMRI during the Trust Game and Ultimatum Game, betrayal and unfairness both recruited overlapping voxels within left anterior insula. Yet, individual differences in regional activation were uncorrelated across tasks, arguing against a simple shared-response account. Instead, cross-task structure emerged in connectivity: stronger anterior insula responses to social versus nonsocial betrayal predicted weaker anterior insula-ventromedial prefrontal coupling during social versus nonsocial fairness evaluation. These findings suggest that betrayal and unfairness are linked less by identical regional responses than by how salience signals engage valuation circuitry across contexts. By bridging two canonical social exchange tasks within the same individuals, this study reveals a network-level architecture for generalizing sensitivity to interpersonal norm violations.

neuroscience↗

Neural Dynamics of Multiattribute Decision Making Under Choice Overload

The present study examines the neural mechanisms of value-based multiattribute decision making through the lens of choice overload during consumer choice. Two behavioral experiments established that choice sets of a moderate size with nine options were perceived as most optimal compared to choice sets with three and 24 options, and options chosen from the largest set size were judged to be the least satisfying. A functional MRI study then examined how the brain responds to choice sets varying in size and complexity by manipulating the number of options presented as well as the presence of asymmetrically dominated decoy alternatives during a simulated online shopping task. Results showed that the dorsolateral prefrontal cortex (DLPFC) activity followed an inverse U-shape as a function of choice set size, peaking for moderately sized choice sets. The anterior cingulate cortex (ACC) exhibited a linear trend with choice set size. Trials containing decoy options elicited greater activation of the anterior insula (AIns) and DLPFC. Computational modeling of choice behavior revealed a greater tendency to utilize a simplifying lexicographic decision strategy as decision difficulty increased, and individual differences in decision strategies were reflected in activity of the ACC and AIns. These findings advance understanding of how the brain integrates effort, control, and strategy during complex value-based decisions.

neuroscience↗