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Testing Sensory and Multisensory Function in Children with Autism Spectrum Disorder
Published on: April 22, 2015
Validity of Actigraphy Compared to Polysomnography for Sleep Assessment in Children With Autism Spectrum Disorder
Enise Yavuz-Kodat1, Eve Reynaud1, Marie-Maude Geoffray2,3
1Centre National de la Recherche Scientifique, Université de Strasbourg, Institut des Neurosciences Cellulaires et Intégratives, Strasbourg, France.
Insights
Actigraphy (ACT) is a validated tool for measuring sleep in children with autism spectrum disorder (ASD), showing good reliability for most sleep parameters when compared to polysomnography (PSG). This study confirms ACT
Area of Science:
- Pediatric Sleep Medicine
- Neurodevelopmental Disorders
- Biomedical Engineering
Background:
- Sleep disorders are highly prevalent in children with autism spectrum disorder (ASD), significantly impacting cognitive and behavioral functions.
- Polysomnography (PSG), the gold standard for sleep assessment, is challenging to implement in children with ASD.
- Actigraphy (ACT) offers a non-invasive, objective method for studying sleep-wake rhythms, making it a potential alternative for this population.
Purpose of the Study:
- To validate Actigraphy (ACT) against Polysomnography (PSG) for sleep measurement in children with Autism Spectrum Disorder (ASD).
- To assess the agreement and reliability of ACT compared to PSG using advanced statistical methods.
Main Methods:
- Simultaneous PSG and ACT recordings were conducted overnight in 26 children diagnosed with ASD.
- Sleep parameters analyzed included Total Sleep Time (TST), Sleep Latency (SL), Wake After Sleep Onset (WASO), and Sleep Efficiency (SE).
- Agreement was assessed using intraclass correlation coefficients (ICC), Bland-Altman plots, equivalence tests, and epoch-by-epoch (EBE) analysis for sensitivity and specificity.
Main Results:
- Equivalence tests showed clinically acceptable differences between ACT and PSG for TST, SL, and SE.
- Good agreement (ICC) was found for SL (0.79) and TST (0.85), with moderate agreement for WASO (0.73) and SE (0.68).
- Epoch-by-epoch analysis demonstrated high sensitivity (0.94) but moderate specificity (0.5) for ACT in detecting sleep versus wakefulness.
Conclusions:
- Actigraphy (ACT) is a valid and reliable tool for assessing sleep in children with ASD, particularly for TST and SL.
- The findings support the use of ACT as a practical alternative to PSG for sleep studies in this population.
- Further research may explore methods to improve ACT's specificity in differentiating sleep from wake states in children with ASD.
Abstract:
Actigraphy (ACT) is a non-invasive objective assessment tool for the study of sleep-wake rhythms. It is of particular interest in children with autism spectrum disorder (ASD), as sleep disorders are highly prevalent and have a significant impact on both cognitive and behavioral functions. As polysomnography (PSG), the gold standard for the assessment of sleep, is difficult to perform in children with ASD, ACT has become a tool of choice but has not yet been validated against PSG using state-of-the-art methodology. The main objective of this study was to assess, for the first time, the validity of ACT compared to PSG for the measurement of sleep in children with ASD. During the same night of hospitalization, PSG and ACT were conducted in 26 children (6 girls and 20 boys; mean age 5.4 years ± 1.6) diagnosed with ASD according to DSM-5 criteria and standardized diagnostic scales. Sleep parameters were total sleep time (TST), sleep latency (SL), wake after sleep onset (WASO), and sleep efficiency (SE). To compare PSG and ACT, we conducted sleep parameter agreement analyses including: intraclass correlation coefficient (ICC), Bland-Altman plots, and equivalence tests. The comparison also included an epoch-by-epoch (EBE) agreement analysis to determine sensitivity (ability to detect sleep) and specificity (ability to detect wake). According to equivalence tests, the difference between ACT and PSG measures was clinically acceptable for TST (<30 min, p < 0.01), SL (<15 min, p < 0.001), and SE (10%, p < 0.01), but not for WASO (<15 min, p = 0.13). There was a good agreement between methods for SL (ICC = 0.79) and TST (ICC = 0.85) and a moderate agreement for WASO (ICC = 0.73) and SE (ICC = 0.68). The EBE agreement analysis revealed a high sensitivity (0.94 ± 0.06) and moderate specificity (0.5 ± 0.2). Since sleep disorders are one of the most common comorbidities within the ASD population and are highly prevalent, it is essential to validate objective tools of assessment. To our knowledge, our study is the first to validate ACT compared to PSG, using a state-of-the-art methodology, in children with ASD. The results suggest ACT to be a valid method to evaluate sleep within this population, with a good reliability for most sleep parameters.
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