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

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Autore
Ioannou L.G., Tsoutsoubi L., Mantzios K., Vliora M., Nintou E., Piil J.F., Notley S.R., Dinas P.C., Gourzoulidis G.A., Havenith G., Brearley M., Mekjavic I.B., Kenny G.P., Nybo L., Flouris A.D.
Data
2022
Language
en
DOI
10.1080/23328940.2022.2044739
Soggetto
adult
Article
body mass
body temperature
climate
consensus
controlled study
core temperature
correlation analysis
cost effectiveness analysis
dehydration
Delphi study
diagnostic test accuracy study
female
field experiment
field study
gravity
heart rate
heat stress
human
hyperthermia
linear regression analysis
male
meteorology
occupational health service
physiological stress
quality adjusted life year
receiver operating characteristic
relative density
risk assessment
risk factor
sensitivity and specificity
skin temperature
temperature stress
training
wet bulb temperature
worker
Taylor and Francis Ltd.
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Abstract
In a series of three companion papers published in this Journal, we identify and validate the available thermal stress indicators (TSIs). In this third paper, we conducted field experiments across nine countries to evaluate the efficacy of 61 meteorology-based TSIs for assessing the physiological strain experienced by individuals working in the heat. We monitored 372 experi-enced and acclimatized workers during 893 full work shifts. We continuously assessed core body temperature, mean skin temperature, and heart rate data together with pre/post urine specific gravity and color. The TSIs were evaluated against 17 published criteria covering physiological parameters, practicality, cost effectiveness, and health guidance issues. Simple meteorological parameters explained only a fraction of the variance in physiological heat strain (R2 = 0.016 to 0.427; p < 0.001), reflecting the importance of adopting more sophisticated TSIs. Nearly all TSIs correlated with mean skin temperature (98%), mean body temperature (97%), and heart rate (92%), while 66% of TSIs correlated with the magnitude of dehydration and 59% correlated with core body temperature (r = 0.031 to 0.602; p < 0.05). When evaluated against the 17 published criteria, the TSIs scored from 4.7 to 55.4% (max score = 100%). The indoor (55.4%) and outdoor (55.1%) Wet-Bulb Globe Temperature and the Universal Thermal Climate Index (51.7%) scored higher compared to other TSIs (4.7 to 42.0%). Therefore, these three TSIs have the highest potential to assess the physiological strain experienced by individuals working in the heat. © 2022 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.
URI
http://hdl.handle.net/11615/74050
Collections
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]

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