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Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
Neurocognitive functioning of children and adolescents with mild-to-moderate chronic kidney disease
Stephen R Hooper1, Arlene C Gerson, Robert W Butler
1Carolina Institute for Developmental Disabilities, CB# 7255, University of North Carolina School of Medicine, Chapel Hill, North Carolina 27599-7255, USA. Stephen.hooper@cidd.unc.edu
Insights
Many children with chronic kidney disease (CKD) show neurocognitive deficits, impacting long-term outcomes. Higher kidney function and lower proteinuria are linked to better cognitive performance in pediatric CKD patients.
Area of Science:
- Pediatric Nephrology
- Neuroscience
- Developmental Psychology
Background:
- Limited data exist on neurocognitive functioning in children with mild-to-moderate chronic kidney disease (CKD).
- Understanding cognitive status is crucial for addressing potential long-term educational and occupational challenges.
Purpose of the Study:
- To assess neurocognitive status in children with mild-to-moderate CKD.
- To identify sociodemographic and health factors associated with neurocognitive performance in this population.
Main Methods:
- Cross-sectional study of 368 children (aged 6-16) from the CKiD cohort.
- Neurocognitive assessments included intelligence, academic achievement, attention, and executive functioning.
- Multivariate regression analyses examined predictors of neurocognitive dysfunction.
Main Results:
- While group averages were within the normal range, 21%-40% of participants had deficits in IQ, academics, attention, or executive function.
- Higher iohexol-based glomerular filtration rate (iGFR) correlated with better executive function.
- Elevated proteinuria was associated with lower verbal IQ, full-scale IQ, and attention variability.
Conclusions:
- A significant proportion of children with mild-to-moderate CKD exhibit neurocognitive dysfunction.
- These deficits may negatively impact future educational and occupational trajectories.
- Further research and interventions are warranted to support cognitive development in pediatric CKD.
Background And Objectives:
Few data exist on the neurocognitive functioning of children with mild-to-moderate chronic kidney disease (CKD). The primary objectives of this paper are (1) to determine the neurocognitive status in this population and (2) to identify sociodemographic and health-status variables associated with neurocognitive functioning.
Design, Setting, Participants, & Measurements:
This was a cross-sectional study of 368 children, aged 6 to 16 years, from the Chronic Kidney Disease in Children (CKiD) cohort. Median iGFR was 43 ml/min per 1.73 m(2), and the median duration of CKD was 8.0 years. Approximately 26% had underlying glomerular disease. Measures of intelligence, academic achievement, attention regulation, and executive functioning were obtained at study entry. The prevalence of neurocognitive deficits was determined by comparing participant scores on each measure of neurocognitive functioning with normative data. The association between hypothesized predictors of neurocognitive dysfunction was evaluated using multivariate regression analyses.
Results:
Neurocognitive functioning was within the average range for the entire group; however, 21% to 40% of participants scored at least one SD below the mean on measures of intelligence quotient (IQ), academic achievement, attention regulation, or executive functioning. Higher iohexol-based GFR (iGFR) predicted a lesser risk for poor performance on measures of executive function. Participants having elevated proteinuria (i.e., urine protein/creatinine >2) scored lower on verbal IQ, full-scale IQ, and attention variability than those without elevated proteinuria.
Conclusions:
Whereas most children with mild-to-moderate CKD have no major neurocognitive deficits, a substantial percentage did show neurocognitive dysfunction that places them at risk for poor long-term educational and occupational outcomes.
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