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Establishing normal values for pediatric nighttime sleep measured by actigraphy: a systematic review and
Barbara C Galland1, Michelle A Short2, Philip Terrill3
1Department of Women's and Children's Health, University of Otago, Dunedin, New Zealand.
Insights
This study establishes age-related normative data for actigraphy-derived sleep in children. Pooled estimates show declining sleep duration and age-related changes in sleep onset/offset, aiding pediatric sleep research.
Area of Science:
- Pediatric Sleep Medicine
- Biomedical Data Science
Background:
- Actigraphy is widely used in pediatric sleep research.
- Current lack of age-specific normative data for actigraphy hinders interpretation.
Purpose of the Study:
- To systematically review literature and establish normative data for actigraphy-derived pediatric sleep.
- To quantify age-related changes in nighttime sleep variables.
Main Methods:
- Systematic search of eight databases for studies on healthy children (0-18 years).
- Meta-analysis and meta-regression of actigraphy data from 79 studies (ages 3-18).
- Analysis of seven nighttime sleep variables, with age as a covariate.
Main Results:
- Pooled sleep duration decreased with age, from 9.68 hours (3-5 years) to 7.4 hours (15-18 years).
- Significant curvilinear associations found between age and sleep onset/offset (p < .001).
- Sleep latency remained stable; significant weekday/weekend differences observed in older children.
Conclusions:
- Established normative values provide a benchmark for interpreting pediatric actigraphy data.
- These findings will aid clinical interpretation and guide future pediatric sleep research.
Background:
Despite the widespread use of actigraphy in pediatric sleep studies, there are currently no age-related normative data.
Objectives:
To systematically review the literature, calculate pooled mean estimates of actigraphy-derived pediatric nighttime sleep variables and to examine the magnitude of change with age.
Methods:
A systematic search was performed across eight databases of studies that included at least one actigraphy sleep variable from healthy children aged 0-18 years. Data suitable for meta-analysis were confined to ages 3-18 years with seven actigraphy variables analyzed using random effects meta-analysis and meta-regression performed using age as a covariate.
Results:
In total, 1334 articles did not meet inclusion criteria; 87 had data suitable for review and 79 were suitable for meta-analysis. Pooled mean estimates for overnight sleep duration declined from 9.68 hours (3-5 years age band) to 8.98, 8.85, 8.05, and 7.4 for age bands 6-8, 9-11, 12-14, and 15-18 years, respectively. For continuous data, the best-fit (R2 = 0.74) equation for hours over the 0-18 years age range was 9.02 - 1.04 × [(age/10)^2 - 0.83]. There was a significant curvilinear association between both sleep onset and offset with age (p < .001). Sleep latency was stable at 19.4 min per night. There were significant differences among the older age groups between weekday and weekend/nonschool days (18 studies). Total sleep time in 15-18 years old was 56 min longer, and sleep onset and offset almost 1 and 2 hours later, respectively, on weekend or nonschool days.
Conclusion:
These normative values have potential application to assist the interpretation of actigraphy measures from nighttime recordings across the pediatric age range, and aid future research.
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