Pre- to postexpedition changes in the energy usage of women undertaking sustained expeditionary polar travel.

John Hattersley, Adrian J Wilson, Robert M Gifford, Rin Cobb, C Doug Thake, Rebecca M Reynolds, David R Woods, Christopher H E Imray

Journal: Journal of applied physiology (Bethesda, Md. : 1985) 2020;126(3):681-690

PMID: 30571278

Abstract

This paper reports the metabolic energy changes in six women who made the first unsupported traverse of Antarctica, covering a distance of 1,700 km in 61 days, hauling sledges weighing up to 80 kg. Pre- and postexpedition, measurements of energy expenditure and substrate utilization were made on all six members of the expedition over a 36-h period in a whole body calorimeter. During the study, subjects were fed an isocaloric diet: 50% carbohydrate, 35% fat, and 15% protein. The experimental protocol contained pre- and postexpedition measurement, including periods of sleep, rest, and three periods of standardized stepping exercise at 80, 100, and 120 steps/min. A median (interquartile range) decrease in the lean and fat weight of the subjects of 1.4 (1.0) and 4.4 (1.8) kg, respectively (P < 0.05) was found, using air-displacement plethysmography. No statistically significant difference was found between pre- and postexpedition values for sleeping or resting metabolic rate, nor for diet-induced thermogenesis. A statistically significant difference was found in energy expenditure between the pre- and postexpedition values for exercise at 100 [4.7 (0.23) vs. 4.4 (0.29), P < 0.05] and 120 [5.7 (0.46) vs. 5.5 (0.43), P < 0.05] steps/min; a difference that disappeared when the metabolic rate values were normalized to body weight. The group was well matched for the measures studied. Whereas a physiological change in weight was seen, the lack of change in metabolic rate measures supports a view that women appropriately nourished and well prepared can undertake polar expeditions with a minimal metabolic energy consequence. NEW & NOTEWORTHY This is the first study on the metabolic energy consequences for women undertaking expeditionary polar travel. The results show that participant selection gave a "well-matched" group, particularly during exercise. Notwithstanding this, individual differences were observed and explored. The results show that appropriately selected, trained, and nourished women can undertake such expeditions with no change in their metabolic energy requirements during rest or while undertaking moderate exercise over a sustained period of time.

Address: Coventry National Institute for Health Research, Clinical Research Facility, Human Metabolic Research Unit, University Hospitals Coventry and Warwickshire, National Health Service Trust , Coventry , United Kingdom.; School of Engineering, University of Warwick , Coventry , United Kingdom.; Department of Physics, University of Warwick , Coventry , United Kingdom.; University/British Heart Foundation Centre for Cardiovascular Science, Queen's Medical Research Institute, University of Edinburgh , Edinburgh , United Kingdom.; Research and Clinical Innovation, Royal Centre for Defence Medicine , Birmingham , United Kingdom.; Performance, Nutrition and Dietetic Consulting, Birmingham , United Kingdom.; Faculty of Health and Life Sciences, Coventry University , Coventry , United Kingdom.; Research Institute for Sport, Physical Activity and Leisure, Leeds Beckett University , Leeds , United Kingdom.; Northumbria and Newcastle National Health Service Trusts, Wansbeck General and Royal Victoria Infirmary, Newcastle , United Kingdom.; Department of Vascular and Renal Transplant Surgery, University Hospitals Coventry and Warwickshire, National Health Service Trust , Coventry , United Kingdom.

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