Maturation of striatal dopamine supports the development of habitual behavior through adolescence
Petrie, D. J.; Parr, A. C.; Sydnor, V.; Ojha, A.; Foran, W.; Tervo-Clemmens, B.; Calabro, F.; Luna, B.
Show abstract
Developmental trajectories during the transition from adolescence to adulthood contribute to the establishment of stable, adult forms of operation. Understanding the neural mechanisms underlying this transition is crucial for identifying variability in normal development and the onset of psychiatric disorders, which typically emerge during this time. Habitual behaviors can serve as a model for understanding brain mechanisms underlying the stabilization of adult behavior, while also conferring risk for psychopathologies. Dopaminergic (DA) processes in the basal ganglia are thought to facilitate the formation of habits; however, developmental trajectories of habits and the brain systems supporting them have not been characterized in vivo in developing humans. The current study examined trajectories of habitual behavior from adolescence to adulthood and sought to understand how the maturing striatal DA system may act as a potential mechanism in the process of habit formation. We used data from two longitudinal studies (combined n = 217, 10 - 32 years of age, 1-3 visits each, 320 total sessions) to characterize normative developmental trajectories of basal ganglia tissue iron concentration (a proxy for DA-related neurophysiology) and goal-direct and habitual control behaviors in a two-stage decision-making task. Tissue iron concentrations across the basal ganglia and habitual responding during the two-stage sequential decision-making task both increased with age (all p < 0.001). Importantly, habitual responding was associated with tissue iron concentrations in the putamen (F = 4.34, p = 0.014), such that increases in habitual responding were supported by increases in putamen tissue iron concentration during childhood through late adolescence. Exploratory analyses of further subdivisions of anatomical regions found that this association was specific to the posterior putamen. These results provide novel evidence in humans that habitual behavior continues to mature into adulthood and may be supported by increased specialization of reward systems.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Increased ventromedial prefrontal cortex activity in adolescence benefits prosocial reinforcement learning 96%
- Puberty contributes to adolescent development of fronto-striatal functional connectivity supporting inhibitory control 95%
- Puberty differentially predicts brain maturation in males and females during early adolescence: A longitudinal ABCD Study 94%
Similar papers in this journal
- Reward enhances memory via age-varying online and offline neural mechanisms across development 96%
- Cortical grey matter mediates increases in model-based control and learning from positive feedback from adolescence to adulthood 96%
- Dorsal Anterior Cingulate Cortex Encodes the Integrated Incentive Motivational Value of Cognitive Task Performance 95%
Similar papers in this journal
- Evidence for absence of links between striatal dopamine synthesis capacity and working memory capacity, spontaneous eye-blink rate, and trait impulsivity 96%
- Age-related differences in prefrontal glutamate are associated with increased working memory decay that gives the appearance of learning deficits 95%
- A robust brain network for sustained attention from adolescence to adulthood that predicts later substance use 95%
Similar papers in this journal
- The longitudinal stability of fMRI activation during reward processing in adolescents and young adults 95%
- Striatal iron content is linked to reduced fronto-striatal brain function under working memory load 95%
- Striatal dopamine supports reward reactivity and learning: A simultaneous PET/fMRI study 94%
Similar papers in this journal
- Meta-analytic clustering dissociates brain activity and behavior profiles across reward processing paradigms 94%
- The neural basis of cost-benefit trade-offs in effort investment: a quantitative activation likelihood estimation meta-analysis 93%
- Neural systems underlying the learning of cognitive effort costs 93%
"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.