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
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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