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Evaluation of various cooling systems after exercise-induced hyperthermia

Tan P.M.S.
Teo E.Y.N.
Ali N.B.
Ang B.C.H.
Iskandar I.
Law L.Y.L.
Lee J.K.W.
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Alternative Title
Abstract
Context: Rapid diagnosis and expeditious cooling of individuals with exertional heat stroke is paramount for survival. Objective: To evaluate the efficacy of various cooling systems after exercise-induced hyperthermia. Design: Crossover study. Setting: Laboratory. Patients or Other Participants: Twenty-two men (age=24 6 2 years, height =1.76 6 0.07 m, mass =70.7 6 9.5 kg) participated. Intervention(s): Each participant completed a treadmill walk until body core temperature reached 39.508C. The treadmill walk was performed at 5.3 km/h on an 8.5% incline for 50 minutes and then at 5.0 km/h until the end of exercise. Each participant experienced 4 cooling phases in a randomized, repeated-crossover design: (1) no cooling (CON), (2) bodycooling unit (BCU), (3) EMCOOLS Flex.Pad (EC), and (4) ThermoSuit (TS). Cooling continued for 30 minutes or until body core temperature reached 38.008C, whichever occurred earlier. Main Outcome Measure(s): Body core temperature (obtained via an ingestible telemetric temperature sensor) and heart rate were measured continuously during the exercise and cooling phases. Rating of perceived exertion was monitored every 5 minutes during the exercise phase and thermal sensation every minute during the cooling phase. Results: The absolute cooling rate was greatest with TS (0.168C/min 6 0.068C/min) followed by EC (0.128C/min 6 0.048C/min), BCU (0.098C/min 6 0.068C/min), and CON (0.068C/min 6 0.028C/min; P , .001). The TS offered a greater cooling rate than all other cooling modalities in this study, whereas EC offered a greater cooling rate than both CON and BCU (P , .0083 for all). Effect-size calculations, however, showed that EC and BCU were not clinically different. Conclusion: These findings provide objective evidence for selecting the most effective cooling system of those we evaluated for cooling individuals with exercise-induced hyperthermia. Nevertheless, factors other than cooling efficacy need to be considered when selecting an appropriate cooling system.
Keywords
Core temperature, Exertional heat stroke, Safety
Source Title
Journal of Athletic Training
Publisher
National Athletic Trainers' Association Inc.
Series/Report No.
Organizational Units
Organizational Unit
PHYSIOLOGY
dept
Rights
Date
2017
DOI
10.4085/1062-6050-52.1.11
Type
Article
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