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Impact of Repeated Acute Exposures to Low and Moderate Exercise-Induced Hypohydration on Physiological and Subjective Responses and Endurance Performance

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Journal Nutrients
Date 2021 Dec 28
PMID 34960028
Citations 3
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Abstract

This study aimed to examine whether repeated exposures to low (2%) and moderate (4%) exercise-induced hypohydration may reverse the potentially deleterious effect of hypohydration on endurance performance. Using a randomized crossover protocol, ten volunteers (23 years, V˙O: 54 mL∙kg∙min) completed two 4-week training blocks interspersed by a 5-week washout period. During one block, participants replaced all fluid losses (EUH) while in the other they were fluid restricted (DEH). Participants completed three exercise sessions per week (walking/running, 55% V˙O, 40 °C): (1) 1 h while fluid restricted or drinking , (2) until 2 and (3) 4% of body mass has been lost or replaced. During the first and the fourth week of each training block, participants completed a 12 min time-trial immediately after 2% and 4% body mass loss has been reached. Exercise duration and distance completed (14.1 ± 2.7 vs. 6.9 ± 1.5 km) during the fixed-intensity exercise bouts were greater in the 4 compared to the 2% condition ( < 0.01) with no difference between DEH and EUH. During the first week, heart rate, rectal temperature and perceived exertion were higher ( < 0.05) with DEH than EUH, and training did not change these outcomes. Exercise-induced hypohydration of 2% and 4% body mass impaired time-trial performance in a practical manner both at the start and end of the training block. In conclusion, exercise-induced hypohydration of 2% and 4% body mass impairs 12 min walking/running time-trial, and repeated exposures to these hypohydration levels cannot reverse the impairment in performance.

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References
1.
Gosselin J, Beliveau J, Hamel M, Casa D, Hosokawa Y, Morais J . Wireless measurement of rectal temperature during exercise: Comparing an ingestible thermometric telemetric pill used as a suppository against a conventional rectal probe. J Therm Biol. 2019; 83:112-118. DOI: 10.1016/j.jtherbio.2019.05.010. View

2.
Noakes T . Fluid replacement during exercise. Exerc Sport Sci Rev. 1993; 21:297-330. View

3.
James L, Funnell M, James R, Mears S . Does Hypohydration Really Impair Endurance Performance? Methodological Considerations for Interpreting Hydration Research. Sports Med. 2019; 49(Suppl 2):103-114. PMC: 6901416. DOI: 10.1007/s40279-019-01188-5. View

4.
Burtscher M, Gatterer H, Burtscher J, Mairbaurl H . Extreme Terrestrial Environments: Life in Thermal Stress and Hypoxia. A Narrative Review. Front Physiol. 2018; 9:572. PMC: 5964295. DOI: 10.3389/fphys.2018.00572. View

5.
Garrett A, Goosens N, Rehrer N, Patterson M, Harrison J, Sammut I . Short-term heat acclimation is effective and may be enhanced rather than impaired by dehydration. Am J Hum Biol. 2014; 26(3):311-20. DOI: 10.1002/ajhb.22509. View