Literature DB >> 34021093

Environmental and Psychophysical Heat Stress in Adolescent Tennis Athletes.

Maria Misailidi, Konstantinos Mantzios, Christos Papakonstantinou, Leonidas G Ioannou, Andreas D Flouris.   

Abstract

PURPOSE: We investigated the environmental conditions in which all outdoor International Tennis Federation (ITF) junior tournaments (athlete ages: <18 y) were held during 2010-2019. Thereafter, we performed a crossover trial (ClinicalTrials.gov: NCT04197375) assessing the efficacy of head-neck precooling for mitigating the heat-induced psychophysical and performance impacts on junior athletes during tennis match play.
METHODS: ITF junior tournament information was collected. We identified meteorological data from nearby (13.6 [20.3] km) weather stations for 3056 (76%) tournaments.
RESULTS: Overall, 30.1% of tournaments were held in hot (25°C-30°C wet-bulb globe temperature [WBGT]; 25.9%), very hot (30°C-35°C WBGT; 4.1%), or extremely hot (>35°C WBGT; 0.1%) conditions. Thereafter, 8 acclimatized male junior tennis athletes (age = 16.0 [0.9] y; height = 1.82 [0.04] m; weight = 71.3 [11.1] kg) were evaluated during 2 matches: one with head-neck precooling (27.7°C [2.2°C] WBGT) and one without (27.9°C [1.8°C] WBGT). Head-neck precooling reduced athletes' core temperature from 36.9°C (0.2°C) to 36.4°C (0.2°C) (P = .001; d = 2.4), an effect reduced by warm-up. Head-neck precooling reduced skin temperature (by 0.3°C [1.3°C]) for the majority of the match and led to improved (P < .05) perceived exertion (by 13%), thermal comfort (by 14%), and thermal sensation (by 15%). Muscle temperature, heart rate, body weight, and urine specific gravity remained unaffected (P ≥ .05; d < 0.2). Small or moderate improvements were observed in most performance parameters assessed (d = 0.20-0.79).
CONCLUSIONS: Thirty percent of the last decade's ITF junior tournaments were held in hot, very hot, or extremely hot conditions (25°C-36°C WBGT). In such conditions, head-neck precooling may somewhat lessen the physiological and perceptual heat strain and lead to small to moderate improvements in the match-play performance of adolescent athletes.

Entities:  

Keywords:  International Tennis Federation; WBGT; core temperature; junior tennis; precooling

Mesh:

Year:  2021        PMID: 34021093     DOI: 10.1123/ijspp.2020-0820

Source DB:  PubMed          Journal:  Int J Sports Physiol Perform        ISSN: 1555-0265            Impact factor:   4.010


  3 in total

Review 1.  Occupational heat strain in outdoor workers: A comprehensive review and meta-analysis.

Authors:  Leonidas G Ioannou; Josh Foster; Nathan B Morris; Jacob F Piil; George Havenith; Igor B Mekjavic; Glen P Kenny; Lars Nybo; Andreas D Flouris
Journal:  Temperature (Austin)       Date:  2022-04-26

2.  Effects of Weather Parameters on Endurance Running Performance: Discipline-specific Analysis of 1258 Races.

Authors:  Konstantinos Mantzios; Leonidas G Ioannou; Zoe Panagiotaki; Styliani Ziaka; Julien D Périard; Sébastien Racinais; Lars Nybo; Andreas D Flouris
Journal:  Med Sci Sports Exerc       Date:  2022-01-01       Impact factor: 5.411

3.  Indicators to assess physiological heat strain - Part 3: Multi-country field evaluation and consensus recommendations.

Authors:  Leonidas G Ioannou; Lydia Tsoutsoubi; Konstantinos Mantzios; Maria Vliora; Eleni Nintou; Jacob F Piil; Sean R Notley; Petros C Dinas; George A Gourzoulidis; George Havenith; Matt Brearley; Igor B Mekjavic; Glen P Kenny; Lars Nybo; Andreas D Flouris
Journal:  Temperature (Austin)       Date:  2022-04-01
  3 in total

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