Assessing sleeping energy expenditure in children using heart-rate monitoring calibrated against open-circuit indirect calorimetry: a pilot study
- 1 November 2002
- journal article
- research article
- Published by Cambridge University Press (CUP) in British Journal of Nutrition
- Vol. 88 (5) , 533-543
- https://doi.org/10.1079/bjn2002708
Abstract
Total energy expenditure (EE) can be assessed in children by the heart-rate (HR) monitoring technique calibrated against open-circuit indirect calorimetry (IC). In this technique, sleeping EE is usually estimated as the lowest value of a 30 min resting EE measurement×0·90 to give an average for the total sleeping period. However, sleeping is a dynamic process in which sleeping EE is modulated by the effect of factors such as body movement and different sleep stages. The aim of the present study was to determine a new method to improve the sleeping EE measurement by taking into account body movements during sleep. Twenty-four non-obese children participated in the present study. All subjects passed through a calibration period. HR and EE measured by IC were simultaneously collected during resting, the postprandial period, and during different levels of activity. Different methods for computing sleeping EE (resting EE×0·90 with different breakpoints (‘flex point’ HR with linear regression or ‘inflection point’ (IP) HR with the third order polynomial regression equation (P3)) were compared with EE measured for least 2·0 h in eight sleeping children. The best method of calculation was then tested in sixteen children undergoing HR monitoring and with a body movement detector. In a subset of eight children undergoing simultaneous sleeping EE measurement by IC and HR, the use of the equation resting EE×0·8 when HRIP during the sleeping period gave the lowest difference (1 (SD 5·4) %) compared with other methods (linear or polynomial regressions). The new formula was tested in an independent subset of sixteen other children. The difference between sleeping ee computed with the formula resting EE×0·90 and sleeping EE computed with resting EE×0·8 when HRIP during sleeping periods was significant (13 (sd 5·9)%) only for active sleeping subjects (n 6 of 16 subjects). The correlation between the difference in the results from the two methods of calculation and body movements was close (r 0·63, Pr 0·679, P<0·001), indicating that this new method is reliable for computing sleeping EE with HR monitoring if children are moving during sleep and improves the total EE assessment.Keywords
This publication has 48 references indexed in Scilit:
- The accuracy of the TriTrac-R3D accelerometer to estimate energy expenditureMedicine & Science in Sports & Exercise, 1999
- Relationships between TriTrac-R3D vectors, heart rate, and self-report in obese childrenMedicine & Science in Sports & Exercise, 1997
- Changes in Sleeping and Basal Energy Expenditure and Substrate Oxidation Induced by Short Term Thyroxin Administration in ManObesity Research, 1996
- Daily energy expenditure by five-year-old children, measured by doubly labeled waterThe Journal of Pediatrics, 1993
- Comparison of heart rate monitoring combined with indirect calorimetry and the doubly labelled water (2H2 18O) method for the measurement of energy expenditure in childrenEuropean Journal of Applied Physiology, 1992
- Prediction of 24-h energy expenditure and its components from physical characteristics and body composition in normal-weight humansThe American Journal of Clinical Nutrition, 1990
- Metabolism and thermoregulation during stages of sleep in humans exposed to heat and coldJournal of Applied Physiology, 1981
- Sleep metabolism and ageJournal of Applied Physiology, 1975
- New methods for calculating metabolic rate with special reference to protein metabolismThe Journal of Physiology, 1949
- Energy Requirements of Children from Birth to PubertyNew England Journal of Medicine, 1919