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Concordance of actigraphy with polysomnography in children with and without attention-deficit/hyperactivity disorder
Jessica Waldon1, Esmot Begum1, Melissa Gendron1
1Department of Psychology and Neuroscience, Dalhousie University, Halifax, Nova Scotia, Canada.
Insights
Actigraphy provides good sleep duration estimates in children, but accuracy for sleep onset and efficiency varies, especially in those with attention-deficit/hyperactivity disorder without medication. A multimodal approach is crucial for accurate sleep assessment.
Area of Science:
- Pediatric Sleep Medicine
- Neurodevelopmental Disorders
- Biomedical Engineering
Background:
- Accurate sleep assessment in children is vital for diagnosing and managing conditions like attention-deficit/hyperactivity disorder (ADHD).
- Polysomnography (PSG) is the gold standard, but actigraphy offers a more accessible, wearable alternative for sleep monitoring.
- Understanding the concordance between actigraphy and PSG in pediatric populations, particularly those with ADHD, is essential for clinical utility.
Purpose of the Study:
- To compare actigraphy-derived sleep variables with polysomnography (PSG) in children.
- To investigate differences in actigraphy-PSG correlations between children with ADHD and typically developing (TD) children.
- To determine if ADHD medication affects the accuracy of actigraphy compared to PSG.
Main Methods:
- Concurrent actigraphy and PSG recordings were conducted in 24 children with ADHD and 24 TD children (aged 6-12 years).
- The ADHD group underwent a 4-week trial including placebo and methylphenidate hydrochloride treatment phases.
- Intra-class correlations and Bland-Altman plots were used to analyze agreement between actigraphy and PSG.
Main Results:
- Actigraphy showed good agreement (ICC >0.61) with PSG for sleep duration in all groups and conditions.
- Agreement for sleep onset latency and sleep efficiency was good in TD children and in the ADHD group during medication, but not during baseline or placebo.
- Actigraphy generally underestimated sleep duration and efficiency, and sleep onset latency, with some exceptions in the ADHD group during placebo.
Conclusions:
- Actigraphy is a reliable tool for estimating sleep duration in children, including those with ADHD.
- Its accuracy for sleep onset latency and sleep efficiency is compromised in children with ADHD when unmedicated.
- A multimodal sleep assessment approach is recommended for children with ADHD to ensure comprehensive and accurate evaluation.
Abstract:
This study sought to: (1) compare actigraphy-derived estimated sleep variables to the same variables based on the gold-standard of sleep assessment, polysomnography; (2) examine whether the correlations between the measures differ between children with attention-deficit/hyperactivity disorder and typically developing children; and (3) determine whether these correlations are altered when children with attention-deficit/hyperactivity disorder are treated with medication. Participants (24 attention-deficit/hyperactivity disorder; 24 typically developing), aged 6-12 years, completed a 1-week baseline assessment of typical sleep and daytime functioning. Following the baseline week, participants in the attention-deficit/hyperactivity disorder group completed a 4-week blinded randomized control trial of methylphenidate hydrochloride, including a 2-week placebo and 2-week methylphenidate hydrochloride treatment period. At the end of each observation (typically developing: baseline; attention-deficit/hyperactivity disorder: baseline, placebo and methylphenidate hydrochloride treatment), all participants were invited to a sleep research laboratory, where overnight polysomnography and actigraphy were recorded concurrently. Findings from intra-class correlations and Bland-Altman plots were consistent. Actigraphy was found to provide good estimates (e.g. intra-class correlations >0.61) of polysomnography results for sleep duration for all groups and conditions, as well as for sleep-onset latency and sleep efficiency for the typically developing group and attention-deficit/hyperactivity disorder group while on medication, but not for the attention-deficit/hyperactivity disorder group during baseline or placebo. Based on the Bland-Altman plots, actigraphy tended to underestimate for sleep duration (8.6-18.5 min), sleep efficiency (5.6-9.3%) and sleep-onset latency, except for attention-deficit/hyperactivity disorder during placebo in which actigraphy overestimated (-2.1 to 6.3 min). The results of the current study highlight the importance of utilizing a multimodal approach to sleep assessment in children with attention-deficit/hyperactivity disorder.
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