Continuous theta-burst stimulation of the ventromedial prefrontal cortex reduces Pavlovian go-invigoration and enhances thalamo-striatal reward prediction error signals
Aster, H.-C.; Schmitt, J.; Herrmann, M.; Zeller, D.; Homola, G. A.; Kampf, T.; Pham, M.; Walther, S.; Romanos, M.; Scholz, V.; Deserno, L. J.
Show abstract
The ventromedial prefrontal cortex (vmPFC) represents value, i.e. whether environmental cues are good or bad. Rewarding cue value is aligned with a tendency to act or to inhibit in case of potential punishment, a so-called Pavlovian Bias. Value-related vmPFC activation may therefore impact Pavlovian bias. However, it remains unknown how the activity in the vmPFC modulates the Pavlovian bias. Thus, we applied continuous theta-burst stimulation (cTBS), a non-invasive protocol that transiently reduces cortical excitability, over the vmPFC in a single-blinded, between-subject study. 90 healthy adults performed a motivational Go/NoGo learning task during fMRI after receiving cTBS (n=45) or sham (n=45) stimulation. Behaviourally, cTBS reduced overall Go response rates and slowed reaction times. Computational modelling showed a decrease in the learning rate, selectively for rewarding outcomes. Computational fMRI analysis showed stronger reward prediction error (RPE) signals in the vmPFC, mediodorsal thalamus, and left dorsal striatum after cTBS, without changes in neural signals at cue onset. These findings provide causal evidence that the vmPFC drives the action-invigoration component of the Pavlovian bias. Significance statementWe causally link ventromedial prefrontal cortex (vmPFC) function to motivated action in humans. In a single-blind cTBS-fMRI study (n=90), transient vmPFC inhibition reduced Go responding, slowed reaction times, and selectively lowered the positive learning rate early in learning. At the same time, reward-prediction-error signals increased in mediodorsal thalamus, dorsal striatum, and vmPFC, while cue-onset value/choice signals were unchanged. Together, the results indicate that vmPFC normally speeds value updating and invigorates actions; when inhibited, control shifts toward slower, subcortically supported learning under higher uncertainty.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Linking impulsivity to activity levels in pre-supplementary motor area during sequential gambling 97%
- How distributed subcortical integration of reward and threat may inform approach-avoidance decisions 97%
- Dorsal Anterior Cingulate Cortex Encodes the Integrated Incentive Motivational Value of Cognitive Task Performance 97%
Similar papers in this journal
- Robust group- but limited individual-level (longitudinal) reliability and insights into cross-phases response prediction of conditioned fear 96%
- Opioid antagonism reduces wanting by strengthening frontostriatal connectivity 95%
- Distinct neural contributions to metacognition for detecting (but not discriminating) visual stimuli 95%
Similar papers in this journal
Similar papers in this journal
- Striatal BOLD and midfrontal theta power express motivation for action 96%
- Enhancing Retrieval Capacity of the Predictive Brain through Dorsolateral Prefrontal Cortex Intervention 96%
- Subcortical nuclei of the human ascending arousal system encode anticipated reward but do not predict subsequent memory 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.