Sustainable solutions to mitigate occupational heat strain - an umbrella review of physiological effects and global health perspectives

Research output: Contribution to journalReviewResearchpeer-review

Standard

Sustainable solutions to mitigate occupational heat strain - an umbrella review of physiological effects and global health perspectives. / Morris, Nathan Bradley; Jay, Ollie; Flouris, Andreas D; Casanueva, Ana; Gao, Chuansi; Foster, Josh; Havenith, George; Nybo, Lars.

In: Environmental Health, Vol. 19, 95, 2020.

Research output: Contribution to journalReviewResearchpeer-review

Harvard

Morris, NB, Jay, O, Flouris, AD, Casanueva, A, Gao, C, Foster, J, Havenith, G & Nybo, L 2020, 'Sustainable solutions to mitigate occupational heat strain - an umbrella review of physiological effects and global health perspectives', Environmental Health, vol. 19, 95. https://doi.org/10.1186/s12940-020-00641-7

APA

Morris, N. B., Jay, O., Flouris, A. D., Casanueva, A., Gao, C., Foster, J., Havenith, G., & Nybo, L. (2020). Sustainable solutions to mitigate occupational heat strain - an umbrella review of physiological effects and global health perspectives. Environmental Health, 19, [95]. https://doi.org/10.1186/s12940-020-00641-7

Vancouver

Morris NB, Jay O, Flouris AD, Casanueva A, Gao C, Foster J et al. Sustainable solutions to mitigate occupational heat strain - an umbrella review of physiological effects and global health perspectives. Environmental Health. 2020;19. 95. https://doi.org/10.1186/s12940-020-00641-7

Author

Morris, Nathan Bradley ; Jay, Ollie ; Flouris, Andreas D ; Casanueva, Ana ; Gao, Chuansi ; Foster, Josh ; Havenith, George ; Nybo, Lars. / Sustainable solutions to mitigate occupational heat strain - an umbrella review of physiological effects and global health perspectives. In: Environmental Health. 2020 ; Vol. 19.

Bibtex

@article{9d6bea8435dd445bb5f0fb4de95ac2b3,
title = "Sustainable solutions to mitigate occupational heat strain - an umbrella review of physiological effects and global health perspectives",
abstract = "Background: Climate change is set to exacerbate occupational heat strain, the combined effect of environmental and internal heat stress on the body, threatening human health and wellbeing. Therefore, identifying effective, affordable, feasible and sustainable solutions to mitigate the negative effects on worker health and productivity, is an increasingly urgent need.Objectives: To systematically identify and evaluate methods that mitigate occupational heat strain in order to provide scientific-based guidance for practitioners.Methods: An umbrella review was conducted in biomedical databases employing the following eligibility criteria: 1) ambient temperatures > 28 °C or hypohydrated participants, 2) healthy adults, 3) reported psychophysiological (thermal comfort, heart rate or core temperature) and/or performance (physical or cognitive) outcomes, 4) written in English, and 5) published before November 6, 2019. A second search for original research articles was performed to identify interventions of relevance but lacking systematic reviews. All identified interventions were independently evaluated by all co-authors on four point scales for effectiveness, cost, feasibility and environmental impact.Results: Following screening, 36 systematic reviews fulfilled the inclusion criteria. The most effective solutions at mitigating occupational heat strain were wearing specialized cooling garments, (physiological) heat acclimation, improving aerobic fitness, cold water immersion, and applying ventilation. Although air-conditioning and cooling garments in ideal settings provide best scores for effectiveness, the limited applicability in certain industrial settings, high economic cost and high environmental impact are drawbacks for these solutions. However, (physiological) acclimatization, planned breaks, shading and optimized clothing properties are attractive alternative solutions when economic and ecological sustainability aspects are included in the overall evaluation.Discussion: Choosing the most effective solution or combinations of methods to mitigate occupational heat strain will be scenario-specific. However, this paper provides a framework for integrating effectiveness, cost, feasibility (indoors and outdoor) and ecologic sustainability to provide occupational health and safety professionals with evidence-based guidelines.",
keywords = "Faculty of Science, Occupational medicine, Occupational hygiene, Environmental health, Climate change, Heat stress",
author = "Morris, {Nathan Bradley} and Ollie Jay and Flouris, {Andreas D} and Ana Casanueva and Chuansi Gao and Josh Foster and George Havenith and Lars Nybo",
note = "CURIS 2020 NEXS 288",
year = "2020",
doi = "10.1186/s12940-020-00641-7",
language = "English",
volume = "19",
journal = "Environmental Health",
issn = "1476-069X",
publisher = "BioMed Central Ltd.",

}

RIS

TY - JOUR

T1 - Sustainable solutions to mitigate occupational heat strain - an umbrella review of physiological effects and global health perspectives

AU - Morris, Nathan Bradley

AU - Jay, Ollie

AU - Flouris, Andreas D

AU - Casanueva, Ana

AU - Gao, Chuansi

AU - Foster, Josh

AU - Havenith, George

AU - Nybo, Lars

N1 - CURIS 2020 NEXS 288

PY - 2020

Y1 - 2020

N2 - Background: Climate change is set to exacerbate occupational heat strain, the combined effect of environmental and internal heat stress on the body, threatening human health and wellbeing. Therefore, identifying effective, affordable, feasible and sustainable solutions to mitigate the negative effects on worker health and productivity, is an increasingly urgent need.Objectives: To systematically identify and evaluate methods that mitigate occupational heat strain in order to provide scientific-based guidance for practitioners.Methods: An umbrella review was conducted in biomedical databases employing the following eligibility criteria: 1) ambient temperatures > 28 °C or hypohydrated participants, 2) healthy adults, 3) reported psychophysiological (thermal comfort, heart rate or core temperature) and/or performance (physical or cognitive) outcomes, 4) written in English, and 5) published before November 6, 2019. A second search for original research articles was performed to identify interventions of relevance but lacking systematic reviews. All identified interventions were independently evaluated by all co-authors on four point scales for effectiveness, cost, feasibility and environmental impact.Results: Following screening, 36 systematic reviews fulfilled the inclusion criteria. The most effective solutions at mitigating occupational heat strain were wearing specialized cooling garments, (physiological) heat acclimation, improving aerobic fitness, cold water immersion, and applying ventilation. Although air-conditioning and cooling garments in ideal settings provide best scores for effectiveness, the limited applicability in certain industrial settings, high economic cost and high environmental impact are drawbacks for these solutions. However, (physiological) acclimatization, planned breaks, shading and optimized clothing properties are attractive alternative solutions when economic and ecological sustainability aspects are included in the overall evaluation.Discussion: Choosing the most effective solution or combinations of methods to mitigate occupational heat strain will be scenario-specific. However, this paper provides a framework for integrating effectiveness, cost, feasibility (indoors and outdoor) and ecologic sustainability to provide occupational health and safety professionals with evidence-based guidelines.

AB - Background: Climate change is set to exacerbate occupational heat strain, the combined effect of environmental and internal heat stress on the body, threatening human health and wellbeing. Therefore, identifying effective, affordable, feasible and sustainable solutions to mitigate the negative effects on worker health and productivity, is an increasingly urgent need.Objectives: To systematically identify and evaluate methods that mitigate occupational heat strain in order to provide scientific-based guidance for practitioners.Methods: An umbrella review was conducted in biomedical databases employing the following eligibility criteria: 1) ambient temperatures > 28 °C or hypohydrated participants, 2) healthy adults, 3) reported psychophysiological (thermal comfort, heart rate or core temperature) and/or performance (physical or cognitive) outcomes, 4) written in English, and 5) published before November 6, 2019. A second search for original research articles was performed to identify interventions of relevance but lacking systematic reviews. All identified interventions were independently evaluated by all co-authors on four point scales for effectiveness, cost, feasibility and environmental impact.Results: Following screening, 36 systematic reviews fulfilled the inclusion criteria. The most effective solutions at mitigating occupational heat strain were wearing specialized cooling garments, (physiological) heat acclimation, improving aerobic fitness, cold water immersion, and applying ventilation. Although air-conditioning and cooling garments in ideal settings provide best scores for effectiveness, the limited applicability in certain industrial settings, high economic cost and high environmental impact are drawbacks for these solutions. However, (physiological) acclimatization, planned breaks, shading and optimized clothing properties are attractive alternative solutions when economic and ecological sustainability aspects are included in the overall evaluation.Discussion: Choosing the most effective solution or combinations of methods to mitigate occupational heat strain will be scenario-specific. However, this paper provides a framework for integrating effectiveness, cost, feasibility (indoors and outdoor) and ecologic sustainability to provide occupational health and safety professionals with evidence-based guidelines.

KW - Faculty of Science

KW - Occupational medicine

KW - Occupational hygiene

KW - Environmental health

KW - Climate change

KW - Heat stress

U2 - 10.1186/s12940-020-00641-7

DO - 10.1186/s12940-020-00641-7

M3 - Review

C2 - 32887627

VL - 19

JO - Environmental Health

JF - Environmental Health

SN - 1476-069X

M1 - 95

ER -

ID: 248192068