bioRxiv · 10.1101/851931
The neural computation of human goal-directed behavior in complex motivational states
Abstract
Motives motivate human behavior. Most behaviors are driven by more than one motive, yet it is unclear how different motives interact and how such motive combinations affect the neural computation of the behaviors they drive. To answer this question, we induced two prosocial motives simultaneously (multi-motive condition) and separately (single motive conditions). After the different motive inductions, participants performed the same choice task in which they allocated points in favor of the other person (prosocial choice) or in favor of themselves (egoistic choice). We used fMRI to assess prosocial choice-related brain responses and drift diffusion modelling to specify how motive combinations affect individual components of the choice process. Our results showed that the combination of the two motives in the multi-motive condition increased participants choice biases prior to the behavior itself. On the neural level, these changes in initial prosocial bias were associated with neural responses in the bilateral dorsal striatum. In contrast, the efficiency of the prosocial decision process was comparable between the multi-motive and the single-motive conditions. These findings provide insights into the computation of prosocial choices in complex motivational states, the motivational setting that drives most human behaviors. HighlightsO_LIActivating different social motives simultaneously can enhance prosocial choices C_LIO_LIMulti-motive combinations change initial prosocial biases C_LIO_LIDorso-striatal activation increases with larger increase of prosocial bias C_LIO_LIMulti-motive combinations modulate relative response caution C_LI
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Saulin, A., Horn, U., Lotze, M., Kaiser, J., Hein, G.. 2019-11-23. The neural computation of human goal-directed behavior in complex motivational states. https://doi.org/10.1101/851931
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