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Effects of exercise and nutritional intake on sleep architecture in adolescents
Karim M Awad1, Amy A Drescher, Atul Malhotra
1Division of Sleep Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA. kmawad@partners.org
Insights
Body mass index (BMI) and exercise correlate with increased stage II sleep. In girls, higher fat intake links to less REM sleep, while in boys, it correlates with REM sleep.
Area of Science:
- Pediatric Sleep Science
- Childhood Nutrition and Physical Activity
Background:
- Limited research exists on the interplay between sleep architecture, body mass index (BMI), nutrition, and physical activity in children.
- Understanding these relationships is crucial for addressing childhood obesity and promoting healthy development.
Purpose of the Study:
- To investigate the association between sleep architecture and dietary habits and physical activity levels in children.
- To determine how sleep patterns relate to BMI, nutrition, and exercise in a pediatric population.
Main Methods:
- A cohort of 319 Caucasian and Hispanic children aged 10-17 years underwent home polysomnography.
- Participants and parents completed questionnaires on diet, physical activity, and sleep habits.
- Sleep architecture was characterized using polysomnography data.
Main Results:
- Significant positive correlations were found between stage II sleep percentage and BMI, total recreational energy expenditure, and overall physical activity in both genders.
- In girls, higher total fat intake was negatively correlated with rapid eye movement (REM) sleep percentage.
- In boys, total fat intake showed a positive correlation with REM sleep percentage after adjusting for BMI and age.
Conclusions:
- BMI and exercise are associated with increased stage II sleep duration.
- Dietary fat intake has differential associations with REM sleep in boys and girls.
- These findings highlight the complex relationship between lifestyle factors and sleep architecture in children.
Purpose:
Few studies have evaluated the relationship between sleep architecture and body mass index (BMI), nutrition, and physical activity in children. This study determined the relationship between sleep architecture and diet and exercise.
Methods:
Three hundred nineteen Caucasian and Hispanic children aged 10 to 17 years participated in the follow-up assessment of the Tucson Children's Assessment of Sleep Apnea study. The children and parents completed several questionnaires on dietary habits, amount of physical activity, and sleep habits. Subjects also underwent a home polysomnogram to characterize their sleep.
Results:
Significant bivariate correlations were noted between stage II sleep percentage and the following: BMI (r = 0.246, p < 0.01), estimated total recreational energy expenditure (r = 0.205, p < 0.01), vigorous activity (r = 0.130, p = 0.009), and total estimated activity (r = 0.148, p = 0.009). In girls, significant correlations were noted between stage II percentage sleep and BMI score (r = 0.279, p < 0.01). Also in girls, significant negative correlation was noted between rapid eye movement (REM) sleep percentage and total fat intake (r = -0.168, p = 0.039). In boys, significant correlations were again seen between stage II percentage sleep and the following: BMI score (r = 0.218, p = 0.005), estimated total recreational energy expenditure (r = 0.265, p = 0.001), vigorous activity (r = 0.209, p = 0.008), and total estimated activity (r = 0.206, p = 0.010). When controlling for BMI percentile and age, significant bivariate correlation was also noted between REM sleep percentage and total fat intake (r = 0.176, p = 0.034) in boys.
Conclusions:
BMI and exercise were associated with increases in stage II sleep. In girls, total fat intake was associated with a reduction in REM sleep, while in boys (after controlling for BMI percentile and age), total fat intake correlated with REM sleep.
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