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Characteristics associated with differences in 24-hour device-measured and self-reported sleep, sedentary behaviour
Joshua Gauci1, Timothy Olds1,2, Carol Maher1
1Alliance for Research in Exercise, Nutrition and Activity (ARENA), Allied Health & Human Performance, University of South Australia, City East Campus, Frome Rd, Adelaide, South Australia, GPO Box 2471, Australia.
Insights
Device-measured and self-reported time use in children differ significantly. Self-reports underestimate light physical activity (LPA) and overestimate sleep, moderate-to-vigorous physical activity (MVPA), and sedentary time, with variations linked to child characteristics.
Area of Science:
- Pediatric Health
- Behavioral Science
- Biometry
Background:
- Children's sleep, sedentary behavior, and physical activity impact health.
- Accurate measurement of children's time use is crucial for health guidelines.
- Understanding discrepancies between device and self-reported measures is key.
Purpose of the Study:
- To compare device-measured versus self-reported sleep, sedentary time, LPA, and MVPA in Australian primary school children.
- To investigate associations between sociodemographic and personal characteristics and measurement differences.
Main Methods:
- 120 children (9-11 years) from the Life on Holidays cohort study.
- 7-day accelerometry (device-measured) and 2-day Multimedia Activity Recall for Children and Adults (MARCA) (self-reported) over 2 years.
- Linear regression models analyzed associations between participant characteristics and measurement differences.
Main Results:
- Self-reported LPA was underestimated by 35% (-83 min), while sleep (+6%), MVPA (+33%), and sedentary time (+3%) were overestimated compared to device measures.
- Sex, parental education, aerobic fitness, and academic performance were significantly associated with measurement differences.
Conclusions:
- Device-measured and self-reported time-use measures are not interchangeable in primary school-aged children.
- Systematic biases exist, influenced by sociodemographic factors, necessitating careful consideration in research and guidelines.
Background:
How much time children spend sleeping, being sedentary and participating in physical activity affects their health and well-being. To provide accurate guidelines for children's time use, it is important to understand the differences between device-measured and self-reported use-of-time measures, and what may influence these differences. Among Australian primary school-aged children, this study aimed to describe the differences between device-measured and self-reported sleep, sedentary behaviour, light-intensity physical activity (LPA), and moderate-vigorous-intensity physical activity (MVPA), and to explore how sociodemographic and personal characteristics were associated with these differences.
Methods:
Participants (n = 120, 67% female, age 9-11 years) were drawn from the Life on Holidays cohort study. Device measured use of time was from 7-day accelerometry worn over five timepoints in a 2-year period, and self-reported use of time was from 2-day Multimedia Activity Recall for Children and Adults (MARCA), conducted at the same timepoints. For each participant and measurement method, average daily time spent in sleep, sedentary time, LPA and MVPA was derived for any overlapping days (that had both types of measurement) across the study period. Participant characteristics were either obtained from baseline parental survey (age, sex, parental education, puberty) or derived from the average of direct measurements across the study timepoints (aerobic fitness from shuttle run, body mass index from anthropometric measurements, academic performance from national standardised tests). Differences between device-measured and self-reported use of time were described using Bland-Altmann plots. Compositional outcome linear-regression models were used to determine which participant characteristics were associated with differences by use-of-time measurement type.
Results:
Relative to device-measured, self-reported daily LPA was underestimated by 83 min (35% difference), whilst sleep (+ 37 min; 6% difference), MVPA (+ 34 min; 33% difference) and sedentary time (+ 12 min; 3% difference) were overestimated. Characteristics underpinning the differences between measurement types were sex (χ2 = 11.9, p = 0.008), parental education (χ2 = 23.0, p = 0.001), aerobic fitness (χ2 = 10.7, p = 0.01) and academic performance (χ2 = 15.9, p = 0.001).
Conclusions:
Among primary school-aged children, device-measured and self-reported use-of-time measurements should not be used interchangeably as there are systematic biases and differences relative to socio-demographic characteristics.
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