MedicineChemistry

A New Whole Room Indirect Calorimeter for Measurement of the Energetics of Exercise

R. Rising, Kathryn Whyte, Jeanine J. Albu, X. Pi-Sunyer

2016.12.1Journal of Exercise Physiology Online

tlooto Summary

The purpose of this study was to compare the accuracy of exercise energy expenditure measurements from a metabolic cart to that obtained with a new exercise whole room indirect calorimeter (EX_WRIC), which was more accurate than the HG_MC without the related tethered connections.

Abstract

The purpose of this study was to compare the accuracy of exercise energy expenditure (EXEE) measurements from a metabolic cart (HG_MC) to that obtained with a new exercise whole room indirect calorimeter (EX_WRIC). First, the HG_MC and the EX_WRIC were subjected to 10, 30-min ethanol (99.8% purity) and propane (99.5% purity) combustion validations, respectively, for EE, ventilation rates (liters) of oxygen (VO2), carbon dioxide (VCO2), and the respiratory quotient (RQ; VCO2/VO2). Then, 15 healthy adults (13 men and 2 women) cycled at 65% age predicted heart rate max for random determination of their EXEE, VO2, VCO2 and RQ after a 12-hr fast with both the HG-MC and EX_WRIC. Comparing stoichiometry to combustion, the HG_MC underestimated EE (P<0.05), VO2 (P<0.05), VCO2 (P<0.05), and RQ (P<0.05) while no differences were found for the EX_WRIC. The EXEE and VO2 were lower (P<0.05) while RQ was greater (P<0.05) when measured with the HG_MC versus the EX_WRIC. The EX_WRIC was more accurate than the HG_MC without the related tethered connections.

Citation format

RISING, R., et al. A new whole room indirect calorimeter for measurement of the energetics of exercise. Journal of Exercise Physiology Online, 2016, 19: 156–169.