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Estimated all-day and evening whole-brain radiofrequency electromagnetic fields doses, and sleep in preadolescents
Alba Cabré-Riera1, Luuk van Wel2, Ilaria Liorni3
1ISGlobal, Barcelona, Spain; Pompeu Fabra University, Barcelona, Spain; Spanish Consortium for Research and Public Health (CIBERESP), Instituto de Salud Carlos III, Madrid, Spain.
Insights
Evening radiofrequency electromagnetic field (RF-EMF) exposure from phone calls may shorten sleep duration in preadolescents. All-day exposure showed no significant sleep effects. Further research is needed to confirm these findings.
Area of Science:
- Environmental Health
- Pediatric Sleep Science
- Electromagnetic Field Exposure
Background:
- Radiofrequency electromagnetic field (RF-EMF) exposure from electronic devices is ubiquitous among children.
- Potential health effects of RF-EMF, particularly on sleep, require further investigation in vulnerable populations like preadolescents.
Purpose of the Study:
- To examine the association between estimated whole-brain RF-EMF doses (all-day and evening) and sleep disturbances in preadolescents.
- To assess the relationship between RF-EMF exposure from various sources and objective sleep measures.
Main Methods:
- Two large birth cohort studies (Dutch Generation R and Spanish INfancia y Medio Ambiente) included 974 and 868 preadolescents (aged 9-12 years), respectively.
- RF-EMF doses from phone calls, screen activities, and far-field sources were estimated for all-day and evening periods.
- Sleep disturbances were assessed using the Sleep Disturbance Scale for Children, and objective sleep measures were obtained via accelerometers and sleep diaries.
Main Results:
- No significant associations were found between all-day RF-EMF doses and self-reported sleep disturbances or objective sleep measures.
- Preadolescents with high evening RF-EMF doses from phone calls exhibited significantly shorter total sleep time (-11.9 min) compared to those with no evening exposure from phone calls.
Conclusions:
- Evening RF-EMF exposure, particularly from phone calls, may represent a critical window for potential sleep disruption in preadolescents.
- The observed association could be influenced by the activities or motivations behind phone calls rather than RF-EMF exposure itself, or it may be a chance finding.
Objective:
To investigate the association of estimated all-day and evening whole-brain radiofrequency electromagnetic field (RF-EMF) doses with sleep disturbances and objective sleep measures in preadolescents.
Methods:
We included preadolescents aged 9-12 years from two population-based birth cohorts, the Dutch Generation R Study (n = 974) and the Spanish INfancia y Medio Ambiente Project (n = 868). All-day and evening overall whole-brain RF-EMF doses (mJ/kg/day) were estimated for several RF-EMF sources including mobile and Digital Enhanced Cordless Telecommunications (DECT) phone calls (named phone calls), other mobile phone uses, tablet use, laptop use (named screen activities), and far-field sources. We also estimated all-day and evening whole-brain RF-EMF doses in these three groups separately (i.e. phone calls, screen activities, and far-field). The Sleep Disturbance Scale for Children was completed by mothers to assess sleep disturbances. Wrist accelerometers together with sleep diaries were used to measure sleep characteristics objectively for 7 consecutive days.
Results:
All-day whole-brain RF-EMF doses were not associated with self-reported sleep disturbances and objective sleep measures. Regarding evening doses, preadolescents with high evening whole-brain RF-EMF dose from phone calls had a shorter total sleep time compared to preadolescents with zero evening whole-brain RF-EMF dose from phone calls [-11.9 min (95%CI -21.2; -2.5)].
Conclusions:
Our findings suggest the evening as a potentially relevant window of RF-EMF exposure for sleep. However, we cannot exclude that observed associations are due to the activities or reasons motivating the phone calls rather than the RF-EMF exposure itself or due to chance finding.
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