bioRxiv Science⌕ Search

Biology subjects

Heim, C.

Publications and source records attributed to Heim, C..

2 recordsLinked to original sources

Longitudinal Changes in Value-based Learning in Middle Childhood: Distinct Contributions of Hippocampus and Striatum

The hippocampal-dependent memory system and striatal-dependent memory system modulate reinforcement learning depending on feedback timing in adults, but their contributions during development remain unclear. In a 2-year longitudinal study, 6-to-7-year-old children performed a reinforcement learning task in which they received feedback immediately or with a short delay following their response. Childrens learning was found to be sensitive to feedback timing modulations in their reaction time and inverse temperature parameter, which quantifies value-guided decision-making. They showed longitudinal improvements towards more optimal value-based learning, and their hippocampal volume showed protracted maturation. Better delayed model-derived learning covaried with larger hippocampal volume longitudinally, in line with the adult literature. In contrast, a larger striatal volume in children was associated with both better immediate and delayed model-derived learning longitudinally. These findings show, for the first time, an early hippocampal contribution to the dynamic development of reinforcement learning in middle childhood, with neurally less differentiated and more cooperative memory systems than in adults.

neuroscience↗

Longitudinal developmental trajectories do not follow cross-sectional age associations in hippocampal subfield and memory development

Many cross-sectional findings suggest that volumes of specific hippocampal subfields increase in middle childhood and early adolescence. In contrast, a small number of available longitudinal studies observed decreased volumes in most subfields over this age range. Further, it remains unknown whether structural changes in development are associated with corresponding gains in childrens memory. Here we report cross-sectional age differences in childrens hippocampal subfield volumes together with longitudinal developmental trajectories and their relationships with memory performance. In two waves, 109 healthy participants aged 6 to 10 years (wave 1: MAge=7.25, wave 2: MAge=9.27) underwent high-resolution magnetic resonance imaging to assess hippocampal subfield volumes, and completed cognitive tasks assessing hippocampus dependent memory processes. We found that cross-sectional age-associations and longitudinal developmental trends in hippocampal subfield volumes were highly discrepant, both by subfields and in direction. Further, volumetric changes were largely unrelated to changes in memory, with the exception that increase in subiculum volume was associated with gains in spatial memory. Importantly, the observed longitudinal patterns of brain-cognition coupling could not be inferred from cross-sectional findings. We discuss potential sources of these discrepancies. This study underscores that childrens structural brain development and its relationship to cognition cannot be inferred from cross-sectional age comparisons. HighlightsO_LIThe subiculum undergoes volumetric increase between 6-10 years of age C_LIO_LIChange across two years in CA1-2 and DG-CA3 was not observed in this age window C_LIO_LIChange across two years did not reflect age differences spanning two years C_LIO_LICross-sectional and longitudinal slopes in stark contrast for hippocampal subfields C_LIO_LILongitudinal brain-cognition coupling cannot be inferred from cross-sectional data C_LI

neuroscience↗