Estimation of anaerobic energy production and efficiency in rats during exercise
- 1 February 1984
- journal article
- research article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 56 (2) , 520-525
- https://doi.org/10.1152/jappl.1984.56.2.520
Abstract
O assess the effects of gradient and running speed on efficiency of exercise, and to evaluate contributions of oxidative and anaerobic energy production (Ean) during locomotion, two sets of experiments were performed. The caloric expenditures of rats were determined from O2 consumption (VO2) while they ran at three speeds (13.4, 26.8, and 43.1 m/min) on five grades (1, 5, 10, 15, and 20%). In addition, lactate turnover (LaT) and oxidation (Laox) were determined on rats at rest or during running at 13.4 and 26.8 m/min on 1% grade, respectively. Lactate production not represented in the VO2 (i.e., Ean) was calculated from the LaT not accounted for by oxidation [(LaT an) = LaT-Laox)]. The Ean was calculated as: Ean = [LaT an(mumol/min)] [1.38 ATP/La] [11 mcal/mumol ATP]. Gross efficiency of exercise (the caloric equivalent of external work/caloric equivalent of VO2 X 100) ranged from 1.7 to 4.5%. Apparent efficiency (the inverse of the regression of caloric equivalent of VO2 on the caloric equivalent of work X 100) ranged from 20.5 to 26.4% and reflected the metabolic response of rats to applied external work. The contribution of Ean to total energy turnover ranged from 1.6% at rest to 0.8% during running at 13.4 m/min on a 1% grade. Despite active LaT during steady-state exercise, Ean contributes insignificantly to total energy transduction, because over 70% of the lactate produced is removed through oxidation. VO2 adequately represents metabolism under these conditions.This publication has 12 references indexed in Scilit:
- Energetics and mechanics of terrestrial locomotion. I. Metabolic energy consumption as a function of speed and body size in birds and mammalsJournal of Experimental Biology, 1982
- Energetics and mechanics of terrestrial locomotion. IV. Total mechanical energy changes as a function of speed and body size in birds and mammalsJournal of Experimental Biology, 1982
- The determination of lactate turnover in vivo with 3H- and 14C-labelled lactate. The significance of sites of tracer administration and samplingBiochemical Journal, 1981
- Determination of metabolic and heart rate responses of rats to treadmill exerciseJournal of Applied Physiology, 1978
- Ion-retardation desalting of blood and other animal tissues for separation of soluble metabolites by two-dimensional chromatographyAnalytical Biochemistry, 1977
- Muscular efficiency during steady-rate exercise. II. Effects of walking speed and work rateJournal of Applied Physiology, 1977
- Glycogen, lactate, and alanine changes in muscle fiber types during graded exerciseJournal of Applied Physiology, 1977
- Oxygen cost of running in trained and untrained men and womenMedicine & Science in Sports & Exercise, 1977
- Lactate metabolism in resting and exercising dogsJournal of Applied Physiology, 1976
- Heat work and phosphorylcreatine break‐down in muscleThe Journal of Physiology, 1968