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February 11, 2026Scientific Reports0 citationsOpen Access

Functional imaging of time on task and the involvement of dopaminergic and cholinergic substrates in cognitive effort and reward

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COChiara OrsiniRVRoberto VivianiKLKarin Labek

Key Points

  • To explore the neural substrates involved in cognitive effort modulated by reward levels during time on task.
  • Neuroimaging studies were conducted to observe brain activity during cognitive tasks.
  • Different trial blocks with varying reward levels were utilized to assess changes in effort and motivation.
  • Specific attention was given to the anterior cingulate cortex, ventral striatum, and basal forebrain regions.
  • Increased activity noted in the anterior cingulate cortex with time on task, alongside activity changes in motor and somatosensory regions.
  • Ventral striatum activity correlated with reward levels but did not show trade-offs with effort in tasks.
  • Basal forebrain activity increased with cognitive effort and was sensitive to the presence of reward, supporting its role in compensatory efforts.

Abstract

Neuroimaging studies have identified the neural substrates associated with sustained cognitive efforts and control and their modulation by rewards. Different lines of evidence implicate the prefrontal cortex (especially the anterior cingulate cortex, ACC), dopaminergic, and cholinergic substrates in this modulation. We studied here the activity of these substrates at increasing time on task (requiring increasing levels of cognitive effort) in trials within blocks with differing reward levels. In the cortex, while peaking in the ACC, activity associated with time on task was extensive, also including activity decrements outside the default mode network, primarily involving motor and somatosensory regions. Information about reward levels was carried in the ventral striatum, consistent with its motivational role, but did not reflect trade-offs with increasing efforts during time on task. Instead, the ventral tegmental area and parts of the basal forebrain (BF) corresponding to the cholinergic Ch4 nuclei increased in activity with time on task and were sensitive to reward levels. This BF activity is consistent with a cholinergic role in driving compensatory efforts modulated by reward levels. These findings identify the BF as a neuroimaging phenotype associated with sustaining task sets and cognitive efforts.

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Cite This Study

Orsini et al. (2026) studied this question.

synapsesocial.com/papers/698be001058ab1890a13ba17https://doi.org/10.1038/s41598-026-37370-9
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