Neural Correlates and Reinstatement of Recent and Remote Memory: A Comparison Between Children and Young Adults

Author:

Schommartz Iryna12ORCID,Lembcke Philip F34,Ortiz-Tudela Javier1,Bauer Martin3,Kaindl Angela M4567ORCID,Buss Claudia38ORCID,Shing Yee Lee12ORCID

Affiliation:

1. Department of Psychology, Goethe University Frankfurt

2. Center for Individual Development and Adaptive Education of Children at Risk (IDeA)

3. Charité – Universitätsmedizin Berlin, Department of Medical Psychology

4. Charité – Universitätsmedizin Berlin, Department of Pediatric Neurology

5. Charité – Universitätsmedizin Berlin, Center for Chronically Sick Children

6. Charité – Universitätsmedizin Berlin, Institute of Cell- and Neurobiology

7. Charité – Universitätsmedizin Berlin, Department of Pediatric Surgery

8. Development, Health and Disease Research Program, Department of Pediatrics, University of California Irvine

Abstract

Children showed less robust memory consolidation across short and long delay compared to young adults.From short to long delay, children show differential neural upregulation for remote versus recent memory compared to young adults.Over time, both children and young adults showed reduced scene-specific reinstatement of neural patterns.Children relied more on gist-like neural reinstatement in anterior hippocampal and medial prefrontal brain regions.Memory consolidation tends to be less robust in childhood than adulthood. However, little is known about the corresponding functional differences in the developing brain that may underlie age-related differences in retention of memories over time. This study examined system-level memory consolidation of object-scene associations after learning (immediate delay), one night of sleep (short delay), as well as two weeks (long delay) in 5-to-7-year-old children (n = 49) and in young adults (n = 39), as a reference group with mature consolidation systems. Particularly, we characterized how functional neural activation and reinstatement of neural patterns change over time, assessed by functional magnetic resonance imaging combined with representational similarity analysis (RSA). Our results showed that memory consolidation in children was less robust and strong (i.e., more forgetting) compared to young adults. Contrasting correctly retained remote versus recent memories across time delay, children showed less upregulation in posterior parahippocampal gyrus, lateral occipital cortex, and cerebellum than adults. In addition, both children and adults showed decrease in scene-specific neural reinstatement over time, indicating time-related decay of detailed differentiated memories. At the same time, we observed more generic gist-like neural reinstatement in medial-temporal and prefrontal brain regions uniquely in children, indicating qualitative difference in memory trace in children. Taken together, 5-to-7-year-old children, compared to young adults, show less robust memory consolidation, possibly due to difficulties in engaging in differentiated neural reinstatement in neocortical mnemonic regions during retrieval of remote memories, coupled with relying more on gist-like generic neural reinstatement.

Publisher

eLife Sciences Publications, Ltd

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