Effects of exercise-heat stress with and without water replacement on brain structure and visuomotor performance were examined. Thirteen healthy adults (23.6 ± 4.2 years) completed counterbalanced 150 min trials of exercise-heat stress (45°C, 15% RH) with water replacement (EHS) or without (~3% body mass loss; EHS-DEH) compared to seated rest (CON). Anatomical scans and fMRI Blood-Oxygen-Level-Dependent responses during a visuomotor pacing task were evaluated. Accuracy decreased (P < 0.05) despite water replacement during EHS (-8.2 ± 6.8% vs. CON) but further degraded with EHS-DEH (-8.3 ± 6.4% vs. EHS and -16.5 ± 10.2% vs. CON). Relative to CON, EHS elicited opposing volumetric changes (P < 0.05) in brain ventricles (-5.3 ± 1.7%) and periventricular structures (cerebellum: 1.5 ± 0.8%) compared to EHS-DEH (ventricles: 6.8 ± 3.4, cerebellum: -0.7 ± 0.7; thalamus: -2.7 ± 1.3%). Changes in plasma osmolality (EHS: -3.0 ± 2.1; EHS-DEH: 9.3 ± 2.1 mOsm/kg) were related (P < 0.05) to thalamus (r = -0.45) and cerebellum volume (r = -0.61) which, in turn, were related (P < 0.05) to lateral (r = -0.41) and fourth ventricle volume (r = -0.67) changes, respectively; but, there were no associations (P > 0.50) between structural changes and visuomotor accuracy. EHS-DEH increased neural activation (P < 0.05) within motor and visual areas versus EHS and CON. Brain structural changes are related to bidirectional plasma osmolality perturbations resulting from exercise-heat stress (with and without water replacement), but do not explain visuomotor impairments. Negative impacts of exercise-heat stress on visuomotor tasks are further exacerbated by dehydration.
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http://dx.doi.org/10.14814/phy2.13805 | DOI Listing |
Res Sports Med
December 2024
Human Performance Lab, Department of Kinesiology, University of Connecticut, Storrs, CT, USA.
The purposes of this study were 1) to investigate if cytokines were increased following a running road-race, and 2) to examine associations between cytokines and hyperthermia. Seventy-seven recreational runners participated in this study which occurred at the 7-mile race in the heat (ambient temperature, 25.0-26.
View Article and Find Full Text PDFJ Therm Biol
October 2024
School of Sport, Exercise, and Rehabilitation Sciences, University of Hull, Hull, United Kingdom; School of Health and Sport Science, Eastern Institute of Technology, Hawke's Bay, New Zealand.
Introduction: There is considerable inter-individual variability in the physiological responses to environmental stressors and so to accurately assess and monitor changes in an individual's ability to cope with exercise-heat stress, a reliable protocol is required. The aim of this study was to examine the repeatability of a 90-min steady-state heat exercise bout with physiological and subjective variables, and performance during an incremental test to exhaustion post 90-min steady-state exercise.
Method: Sixteen mixed ability males (Age: 39 ± 15yrs; Height: 176.
J Athl Train
October 2024
2College of Global Futures, Arizona State University, PO Box 877904, Tempe, AZ 85287-7904, USA.
Context: The training stress of heat acclimatization optimizing exercise performance in a hot environment can be demanding.
Objectives: This study evaluated the efficiency of different single heating protocols to elevate core temperature.
Design: Not randomized controlled trial.
Physiol Rep
September 2024
PepsiCo R&D Life Sciences, Gatorade Sports Science Institute, Valhalla, New York, USA.
The purpose of this study was to determine the effect of hydration status on the change in sweat sodium (Na), chloride (Cl), and potassium (K) concentrations during exercise-heat stress. Fifteen subjects (Six female, nine male; 29 ± 9 y; 71 ± 14 kg) completed 90 min of cycling (81% HR) in the heat (~33°C, 42% rh) with fluid replacement to maintain euhydration (EUH) or without fluid to dehydrate to 2.4 ± 0.
View Article and Find Full Text PDFInt J Sport Nutr Exerc Metab
November 2024
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