Aerobic fitness and executive control of relational memory in preadolescent children
Laura Chaddock1, Charles H Hillman, Sarah M Buck
1Department of Psychology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Insights
Childhood aerobic fitness is linked to better relational memory. Higher-fit children demonstrated superior recognition memory, especially for complex relational information, highlighting the importance of physical activity for cognitive development.
Area of Science:
- Neuroscience
- Developmental Psychology
- Exercise Science
Background:
- Childhood physical activity is declining, with implications for public health and education.
- Aerobic exercise is known to benefit executive functions and hippocampal function.
- Understanding the link between fitness and cognitive abilities in children is crucial.
Purpose of the Study:
- To investigate the relationship between aerobic fitness and executive control of relational memory in 9- and 10-year-old children.
- To examine how aerobic fitness influences memory encoding and retrieval strategies.
- To bridge research on aerobic exercise, executive control, and hippocampal function in children.
Main Methods:
- Children were categorized as higher-fit or lower-fit based on aerobic fitness levels.
- A cognitive task assessed recognition memory for individual items and relational information (faces and houses).
- Participants completed both item and relational encoding conditions, with recognition trials testing memory for studied pairs and new items.
Main Results:
- Lower-fit children exhibited significantly poorer recognition memory performance compared to higher-fit children.
- This deficit was specific to the relational encoding condition, not individual item recognition.
- No correlation was found between aerobic fitness and recognition of nonrelational (individual item) information.
Conclusions:
- Childhood aerobic fitness is associated with the effective use of executive control processes for relational memory.
- Findings suggest a role for aerobic fitness in the strategic engagement of prefrontal and hippocampal systems.
- Promoting physical activity in children may enhance cognitive functions critical for learning and memory.
Purpose:
the neurocognitive benefits of an active lifestyle in childhood have public health and educational implications, especially as children in today's technological society are becoming increasingly overweight, unhealthy, and unfit. Human and animal studies show that aerobic exercise affects both prefrontal executive control and hippocampal function. This investigation attempts to bridge these research threads by using a cognitive task to examine the relationship between aerobic fitness and executive control of relational memory in preadolescent 9- and 10-yr-old children.
Method:
higher-fit and lower-fit children studied faces and houses under individual item (i.e., nonrelational) and relational encoding conditions, and the children were subsequently tested with recognition memory trials consisting of previously studied pairs and pairs of completely new items. With each subject participating in both item and relational encoding conditions, and with recognition test trials amenable to the use of both item and relational memory cues, this task afforded a challenge to the flexible use of memory, specifically in the use of appropriate encoding and retrieval strategies. Hence, the task provided a test of both executive control and memory processes.
Results:
lower-fit children showed poorer recognition memory performance than higher-fit children, selectively in the relational encoding condition. No association between aerobic fitness and recognition performance was found for faces and houses studied as individual items (i.e., nonrelationally).
Conclusions:
the findings implicate childhood aerobic fitness as a factor in the ability to use effective encoding and retrieval executive control processes for relational memory material and, possibly, in the strategic engagement of prefrontal- and hippocampal-dependent systems.
Related Concept Videos
Information Processing Approach
Role of Cerebellum and Prefrontal Cortex in Memory
Working Memory
Self-Regulation
Revisionist Views of Adolescent and Adult Cognition
Cognitive Development During Adolescence


