Study2019

Heat Exposure and Hypohydration Exacerbate Physiological Strain During Load Carrying

Adams EL, Casa DJ, Huggins RA, DeMartini-Nolan JK, Stearns RL, Kennedy RM, Bosworth MM, DiStefano LJ, Armstrong LE, Maresh CM

Journal of strength and conditioning research · 8 citations

Review labels

Funding not disclosed

Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.

How it was studied

Design
Controlled clinical trial (classified by our AI screen)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Funding not disclosed

Publication

Published
2017-02-10 · J Strength Cond Res · vol. 33 · issue 3 · pp. 727–735
Publisher
Lippincott Williams & Wilkins
Cited
10 citations · more than 2% of similar papers · 0.0× the field average
References
37 works
Access
Paywalled
Research areas
Thermoregulation and physiological responses · Exercise and Physiological Responses · Sports Performance and Training
Keywords
Treadmill, Heat stress, VO2 max, Mood, Medicine, Heart rate, Internal medicine, Animal science, Cardiology, Biology, Blood pressure
MeSH
humans, dehydration, exercise test, exercise, affect, heart rate, adolescent, adult, male, hot temperature, young adult

10 authors

From US

  • Elizabeth L. AdamsPennsylvania State University; University of Connecticut
  • Douglas J. Casa · correspondingUniversity of Connecticut
  • Robert A. HugginsUniversity of Connecticut
  • Julie K. DeMartini-NolanSacred Heart University
  • Rebecca L. StearnsUniversity of Connecticut
  • Rachel KennedyLehigh University

Abstract

Adams, EL, Casa, DJ, Huggins, RA, DeMartini-Nolan, JK, Stearns, RL, Kennedy, RM, Bosworth, MM, DiStefano, LJ, Armstrong, LE, and Maresh, CM. Heat exposure and hypohydration exacerbate physiological strain during load carrying. J Strength Cond Res 33(3): 727-735, 2019-Heat exposure and hypohydration induce physiological and psychological strain during exercise; however, it is unknown if the separate effects of heat exposure and hypohydration are synergistic when co-occurring during loaded exercise. This study compared separate and combined effects of heat exposure and hypohydration on physiological strain, mood state, and visual vigilance during loaded exercise. Twelve men (mean ± SD; age, 20 ± 2 years; body mass, 74.0 ± 8.2 kg; maximal oxygen uptake, 57.0 ± 6.0 ml·kg·min) completed 4 trials under the following conditions: euhydrated temperate (EUT), hypohydrated temperate (HYT), euhydrated hot (EUH), and hypohydrated hot (HYH). Exercise was 90 minutes of treadmill walking (∼50% V[Combining Dot Above]O2max, 5% grade) while carrying a 45-lb rucksack. Profile of Mood States and the Scanning Visual Vigilance Test were completed before and after exercise. The separate effects of heat exposure (EUH) and hypohydration (HYT) on post-exercise rectal temperature (Tre) were similar (38.25 ± 0.63°C vs. 38.22 ± 0.29°C, respectively, p > 0.05), whereas in combination (HYH), post-exercise Tre was far greater (39.32 ± 0.43°C). Increase in Tre per 1% body mass loss (BML) for HYH (vs. EUH) was greater than HYT (vs. EUT) (0.32 vs. 0.04°C, respectively, p = 0.02); heart rate increase per 1% BML for HYH (vs. EUH) was 7 b·min compared with HYT (vs. EUT) at 3 b·min (p = 0.30). Hypohydrated hot induced greater mood disturbance (post-exercise - pre-exercise) (35 ± 21 units) compared with other conditions (EUT = 3 ± 9 units; HYT = 3 ± 16 units; EUH = 16 ± 26 units; p 0.05). Independently, heat exposure and hypohydration induced similar physiological strain during loaded exercise; when combined, heat exposure with hypohydration, synergistically exacerbated physiological strain and mood disturbance.

Abstract via Europe PMC. Copyright remains with the authors or publisher.

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