ArticleScientific reports2023
Neurophysiological mechanisms underlying the differential effect of reward prospect on response selection and inhibition.
Article in Scientific reports, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed.
- Uncertainty, Cognitive Control and Theta-Band Activity: A Relationship That Depends on Metacontrol Requirements.Human brain mapping · 2025Article
- Distinct Alpha Connectivity Patterns During Response Inhibition in Alcohol Use Disorder.Human brain mapping · 2025Article
- GABA and Glx levels in cortico-subcortical networks predict catecholaminergic effects on response inhibition.Journal of psychopharmacology (Oxford, England) · 2025Article
- Neurophysiological insights into catecholamine-dependent tDCS modulation of cognitive control.Communications biology · 2025Article
- Neuromodulation and mindfulness as therapeutic treatment in detoxified patients with alcohol use disorder.BMC psychiatry · 2024Article
- Effects of Catecholaminergic and Transcranial Direct Current Stimulation on Response Inhibition.The international journal of neuropsychopharmacology · 2024Article
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Authors and funding
3 authors.
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Abstract
Reward and cognitive control play crucial roles in shaping goal-directed behavior. Yet, the behavioral and neural underpinnings of interactive effects of both processes in driving our actions towards a particular goal have remained rather unclear. Given the importance of inhibitory control, we investigated the effect of reward prospect on the modulatory influence of automatic versus controlled processes during response inhibition. For this, a performance-contingent monetary reward for both correct response selection and response inhibition was added to a Simon NoGo task, which manipulates the relationship of automatic and controlled processes in Go and NoGo trials. A neurophysiological approach was used by combining EEG temporal signal decomposition and source localization methods. Compared to a non-rewarded control group, rewarded participants showed faster response execution, as well as overall lower response selection and inhibition accuracy (shifted speed-accuracy tradeoff). Interestingly, the reward group displayed a larger interference of the interactive effects of automatic versus controlled processes during response inhibition (i.e., a larger Simon NoGo effect), but not during response selection. The reward-specific behavioral effect was mirrored by the P3 amplitude, underlining the importance of stimulus-response association processes in explaining variability in response inhibition performance. The selective reward-induced neurophysiological modulation was associated with lower activation differences in relevant structures spanning the inferior frontal and parietal cortex, as well as higher activation differences in the somatosensory cortex. Taken together, this study highlights relevant neuroanatomical structures underlying selective reward effects on response inhibition and extends previous reports on the possible detrimental effect of reward-triggered performance trade-offs on cognitive control processes.
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