Related Experiment Video
Updated: Mar 22, 2026

A Protocol for the Administration of Real-Time fMRI Neurofeedback Training
Published on: August 24, 2017
Longitudinal development of frontoparietal activity during feedback learning: Contributions of age, performance,
Sabine Peters1, Anna C K Van Duijvenvoorde1, P Cédric M P Koolschijn2
1Department of Developmental Psychology, Leiden University, The Netherlands; Leiden Institute for Brain and Cognition, The Netherlands.
Abstract:
Feedback learning is a crucial skill for cognitive flexibility that continues to develop into adolescence, and is linked to neural activity within a frontoparietal network. Although it is well conceptualized that activity in the frontoparietal network changes during development, there is surprisingly little consensus about the direction of change. Using a longitudinal design (N=208, 8-27 years, two measurements in two years), we investigated developmental trajectories in frontoparietal activity during feedback learning. Our first aim was to test for linear and nonlinear developmental trajectories in dorsolateral prefrontal cortex (DLPFC), superior parietal cortex (SPC), supplementary motor area (SMA) and anterior cingulate cortex (ACC). Second, we tested which factors (task performance, working memory, cortical thickness) explained additional variance in time-related changes in activity besides age. Developmental patterns for activity in DLPFC and SPC were best characterized by a quadratic age function leveling off/peaking in late adolescence. There was a linear increase in SMA and a linear decrease with age in ACC activity. In addition to age, task performance explained variance in DLPFC and SPC activity, whereas cortical thickness explained variance in SMA activity. Together, these findings provide a novel perspective of linear and nonlinear developmental changes in the frontoparietal network during feedback learning.
Related Concept Videos
Facial Feedback Hypothesis
Effects of feedback
Feedback significantly modifies the gain of a control system. The gain of a system without feedback is altered by a factor of one plus GH, where G represents...
Observational Learning
Feedback Inhibition
Positive and Negative Feedback Loops
Root Loci for Positive-Feedback Systems
The construction rules for the root locus in positive feedback systems are similar to those in...

