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Iron deficiency after arrival is associated with general cognitive and behavioral impairment in
Anita J Fuglestad1, Michael K Georgieff, Sandra L Iverson
1Institute of Child Development, University of Minnesota, 51 E. River Parkway, Minneapolis, MN 55455, USA. fugle007@umn.edu
Insights
Iron deficiency in adopted children is linked to behavioral issues and lower cognitive scores. Monitoring iron status post-adoption is crucial for development, especially for children with rapid catch-up growth.
Area of Science:
- Pediatric Development
- Nutritional Neuroscience
- Child Psychology
Background:
- Post-institutionalized (PI) children face developmental challenges.
- Iron deficiency is a common concern in this population.
- Early post-adoption period is critical for neurodevelopmental assessment.
Purpose of the Study:
- To examine the impact of iron deficiency on cognitive and behavioral development in PI children.
- To assess neurobehavioral changes during the early post-adoption phase.
- To identify specific developmental risks associated with iron status.
Main Methods:
- Longitudinal study of 57 PI children (9-46 months) post-adoption.
- Assessed iron status, behavior (TBAQ-R), and cognitive development (Mullen Scales).
- Evaluated children at baseline (1 month post-arrival) and 6-month follow-up.
Main Results:
- 26% were iron deficient at baseline, 18% at follow-up.
- Iron deficiency at follow-up correlated with increased hyperactivity and lower Mullen Early Learning Composite scores.
- Behavioral issues like inattention and hyperactivity mediated the link between iron status and cognitive outcomes.
Conclusions:
- Iron deficiency is associated with neurobehavioral alterations in PI children post-adoption.
- Continued iron status monitoring is recommended for at least six months post-adoption.
- Developmental evaluations are advised for children with iron deficiency, regardless of initial iron status.
Abstract:
To investigate the role of iron deficiency in general cognitive and behavioral development in post-institutionalized (PI) children during the early post-adoption period. PI children (N = 57) adopted from Eastern Europe or Central Asia (9-46 months of age) were seen at baseline around 1 month after arrival into the US and at follow-up 6 months later. Measures included anthropometry, iron status, the Toddler Behavior Assessment Questionnaire-R (TBAQ-R), the Mullen Scales of Early Learning, and examiner-rated behaviors during testing. 26 % were iron deficient at baseline; 18 % were iron deficient at follow-up. There was a trend for those with iron deficiency at baseline to be more fearful on the TBAQ-R. Those with iron deficiency at follow-up displayed more hyperactivity on both the TBAQ-R and the examiner-rated behaviors. Those with iron deficiency at follow-up were more likely to score below average on the Mullen Early Learning Composite (iron deficient: 80 %; good iron status: 32 %). The association between iron status at follow-up and the Mullen Early Learning Composite was mediated by inattention and hyperactivity behaviors during testing. Iron deficiency is associated with neurobehavioral alterations months after arrival, mediated by the effect on attention and activity levels. Iron status needs to be monitored at least through the first half-year post-adoption, particularly in children exhibiting rapid catch-up growth. Additionally, developmental evaluation is recommended in those with iron deficiency, even in children with good iron status at arrival.
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