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Relation of Heart Rate and its Variability during Sleep with Age, Physical Activity, and Body Composition in Young
David Herzig1, Prisca Eser1, Thomas Radtke2
1Preventive Cardiology and Sports Medicine, University Clinic for Cardiology, Inselspital, Bern University Hospital, University of Bern Bern, Switzerland.
Insights
Physical activity and body composition impact heart rate variability (HRV) in children. However, age-related heart rate decline complicates interpretation, suggesting intrinsic heart rate is crucial for accurate analysis.
Area of Science:
- Pediatric cardiology
- Exercise physiology
- Autonomic nervous system function
Background:
- Previous research suggests physical activity and body composition influence vagal tone.
- Age-related heart rate decrease in children is often misattributed to increased vagal tone, potentially ignoring intrinsic heart rate changes.
- Most studies do not account for intrinsic heart rate when assessing heart rate variability (HRV) in pediatric populations.
Purpose of the Study:
- To investigate the relationship between physical activity, body composition, and HRV in young children.
- To differentiate the effects of physical activity and body composition on HRV from age-related heart rate decline.
- To assess HRV independently of intrinsic heart rate changes in children aged 2-6 years.
Main Methods:
- 309 children aged 2-6 years underwent anthropometric measurements.
- 14-18 hour ambulatory electrocardiograms and 7-day accelerometry were collected.
- Heart rate variability (HRV) was analyzed during specific deep sleep segments, with linear models adjusted for heart rate and confounders.
Main Results:
- Heart rate decreased with increased physical activity and reduced skinfold thickness.
- HRV parameters showed a decline with increasing age, height, and weight in heart rate-adjusted models.
- These associations were significant only during specific deep sleep periods, not random sleep phases.
Conclusions:
- Standard HRV parameters did not increase with age in this cohort, contrary to some prior studies.
- When adjusted for heart rate, HRV parameters significantly decreased with age in children.
- Accurate interpretation of HRV in developing children necessitates consideration of intrinsic heart rate.
Abstract:
Background: Recent studies have claimed a positive effect of physical activity and body composition on vagal tone. In pediatric populations, there is a pronounced decrease in heart rate with age. While this decrease is often interpreted as an age-related increase in vagal tone, there is some evidence that it may be related to a decrease in intrinsic heart rate. This factor has not been taken into account in most previous studies. The aim of the present study was to assess the association between physical activity and/or body composition and heart rate variability (HRV) independently of the decline in heart rate in young children. Methods: Anthropometric measurements were taken in 309 children aged 2-6 years. Ambulatory electrocardiograms were collected over 14-18 h comprising a full night and accelerometry over 7 days. HRV was determined of three different night segments: (1) over 5 min during deep sleep identified automatically based on HRV characteristics; (2) during a 20 min segment starting 15 min after sleep onset; (3) over a 4-h segment between midnight and 4 a.m. Linear models were computed for HRV parameters with anthropometric and physical activity variables adjusted for heart rate and other confounding variables (e.g., age for physical activity models). Results: We found a decline in heart rate with increasing physical activity and decreasing skinfold thickness. HRV parameters decreased with increasing age, height, and weight in HR-adjusted regression models. These relationships were only found in segments of deep sleep detected automatically based on HRV or manually 15 min after sleep onset, but not in the 4-h segment with random sleep phases. Conclusions: Contrary to most previous studies, we found no increase of standard HRV parameters with age, however, when adjusted for heart rate, there was a significant decrease of HRV parameters with increasing age. Without knowing intrinsic heart rate correct interpretation of HRV in growing children is impossible.
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