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Published on: October 2, 2019
Toddler behavior following polysomnography: effects of unintended sleep disturbance
Hawley E Montgomery-Downs1, David Gozal
1West Virginia University, Department of Psychology, 1130 Life Sciences Building, PO Box 6040, Morgantown, WV 26506-6040, USA. Hawley.Montgomery-Downs@mail.wvu.edu
Insights
Laboratory polysomnography disrupted toddler sleep compared to home sleep, reducing total sleep time and efficiency. These sleep changes did not impact cognitive scores but were linked to emotional regulation difficulties in children.
Area of Science:
- Pediatric Sleep Medicine
- Developmental Psychology
- Neuroscience
Background:
- Childhood sleep disorders significantly impact behavior and cognition.
- The first-night effect of polysomnography on these measures in toddlers is largely unknown.
- Understanding sleep differences in home versus lab settings is crucial for accurate assessment.
Purpose of the Study:
- To compare sleep patterns in healthy toddlers at home versus during laboratory polysomnography.
- To investigate how these sleep differences relate to cognitive and behavioral assessments.
- To identify potential first-night effects in this age group.
Main Methods:
- Twenty 14-month-old toddlers participated.
- Actigraphy was used to monitor sleep at home for 5 nights prior to and during laboratory polysomnography.
- The Bayley Scales of Infant Development (BSID-II) were administered the morning after polysomnography.
Main Results:
- Polysomnography resulted in reduced total sleep time, lower sleep efficiency, and increased activity during sleep compared to home sleep.
- Sleep onset times were similar between home and laboratory settings.
- Standardized cognitive and behavioral assessments were not affected by sleep differences, but sleep fragmentation during polysomnography correlated with emotional regulation difficulties.
Conclusions:
- Laboratory polysomnography disrupts sleep in toddlers compared to their natural home environment.
- While cognitive scores were unaffected, sleep disruption during polysomnography was associated with poorer emotional regulation.
- Researchers should consider the impact of sleep disturbance and emotional regulation in studies involving young children undergoing polysomnography.
Study Objectives:
Childhood sleep disorders are consistently shown to affect behavior and cognition, but first-night effects on these measures are generally unknown. We sought to examine how sleep in the home versus the laboratory differed among healthy toddlers and how such differences relate to standardized scores on assessments the morning following polysomnography.
Design, Setting, And Participants:
Twenty healthy 14-month-olds wore actigraphs during nighttime sleep at home for 5 nights preceding and during standard overnight laboratory polysomnography. The Bayley Scales of Infant Development (BSID-II) were administered once the morning after polysomnography.
Measurements And Results:
All subjects had normal polysomnography. Sleep-start times at home and during polysomnography did not differ, whereas, during polysomnography, subjects awoke earlier (p = .008, d = .58), their total sleep time (p <. 001, d = 1.1) and sleep efficiency (p = .004, d = .57) were reduced, and they had shorter sleep-bout lengths (p = .004, d = .03), less immobility (p = .003, d = .62), and greater average activity during sleep (p <. 001, d = .98). Standardized assessments were not affected by differences between home and polysomnography night sleep, but children with greater emotional regulation difficulty had a lower percentage of immobility (r = -0.67, p = .001) and increased sleep fragmentation (r = -0.60, p = .005) during polysomnography.
Conclusions:
Although sleep-onset times were preserved, sleep in the laboratory was disrupted, compared with at home. These differences did not affect standardized scores, but the magnitude of the difference was associated with worse emotional regulation. The effects of sleep disturbance during polysomnography, or the influence of poor emotional regulation on sleep in the laboratory, should be considered in studies of young children.
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