Literature DB >> 15204859

Physical work limits for Toronto firefighters in warm environments.

G A Selkirk1, T M McLellan.   

Abstract

This study examined the relationship between time to reach critical end points (tolerance time [TT] and metabolic rate for three different environmental temperatures (25 degrees C, 30 degrees C, and 35 degrees C, 50% relative humidity), while wearing firefighting protective clothing (FPC) and self-contained breathing apparatus (SCBA). Thirty-seven Toronto firefighters (33 male and 4 female) were divided into four work groups defined as Heavy (H, n = 9), Moderate (M, n = 9), Light (L, n = 10), and Very Light (VL, n = 9). At 25 degrees C, 30 degrees C, and 35 degrees C, TT (min) decreased from 56 to 47 to 41 for H, 92 to 65 to 54 for M, 134 to 77 to 67 for L, and 196 to 121 to 87 for VL. Significant differences in TT were observed across all group comparisons, excluding M versus L at 30 degrees C and 35 degrees C, and H versus M at 35 degrees C. Comparing 25 degrees C to 30 degrees C, M, L, and VL had significant decreases in TT, whereas only VL had a significant decrease when 30 degrees C was compared to 35 degrees C. For 25 degrees C to 30 degrees C, the relative change in TT was significantly greater for L (37%) and VL (41%) compared with H (16%) and M (26%). For 30 degrees C to 35 degrees C, the relative change among the groups was similar and approximately 17%. During passive recovery at 35 degrees C, rectal temperature (T(re)) continued to increase 0.5 degrees C above T(re final), whereas heart rate declined significantly. These findings show the differential impact of environmental conditions at various metabolic rates on TT while wearing FPC and SCBA. Furthermore, these findings reveal passive recovery may not be sufficient to reduce T(re) below pre-recovery levels when working at higher metabolic rates in hot environments.

Mesh:

Year:  2004        PMID: 15204859     DOI: 10.1080/15459620490432114

Source DB:  PubMed          Journal:  J Occup Environ Hyg        ISSN: 1545-9624            Impact factor:   2.155


  11 in total

1.  Functional Performance of Firefighters After Exposure to Environmental Conditions and Exercise.

Authors:  Kenneth E Games; Zachary K Winkelmann; Kaitlin D McGinnis; Jeremy S McAdam; David D Pascoe; JoEllen M Sefton
Journal:  J Athl Train       Date:  2019-12-26       Impact factor: 2.860

2.  Comparison of active cooling devices with passive cooling for rehabilitation of firefighters performing exercise in thermal protective clothing: a report from the Fireground Rehab Evaluation (FIRE) trial.

Authors:  David Hostler; Steven E Reis; James C Bednez; Sarah Kerin; Joe Suyama
Journal:  Prehosp Emerg Care       Date:  2010 Jul-Sep       Impact factor: 3.077

3.  Comparison of rehydration regimens for rehabilitation of firefighters performing heavy exercise in thermal protective clothing: a report from the fireground rehab evaluation (FIRE) trial.

Authors:  David Hostler; James C Bednez; Sarah Kerin; Steven E Reis; Pui Wah Kong; Julia Morley; Michael Gallagher; Joe Suyama
Journal:  Prehosp Emerg Care       Date:  2010 Apr-Jun       Impact factor: 3.077

4.  The effects of metabolic work rate and ambient environment on physiological tolerance times while wearing explosive and chemical personal protective equipment.

Authors:  Joseph T Costello; Kelly L Stewart; Ian B Stewart
Journal:  Biomed Res Int       Date:  2015-03-19       Impact factor: 3.411

5.  The Relationship between Physical Fitness and Simulated Firefighting Task Performance.

Authors:  Goris Nazari; Joy C MacDermid; Kathryn E Sinden; Tom J Overend
Journal:  Rehabil Res Pract       Date:  2018-04-12

6.  Fractional Contribution of Wildland Firefighters' Personal Protective Equipment on Physiological Strain.

Authors:  Belén Carballo-Leyenda; José G Villa; Jorge López-Satué; Pilar S Collado; Jose A Rodríguez-Marroyo
Journal:  Front Physiol       Date:  2018-08-14       Impact factor: 4.566

7.  Influence of Personal Protective Equipment on Wildland Firefighters' Physiological Response and Performance during the Pack Test.

Authors:  Belén Carballo-Leyenda; Jorge Gutiérrez-Arroyo; Fabio García-Heras; Pilar Sánchez-Collado; José G Villa-Vicente; Jose A Rodríguez-Marroyo
Journal:  Int J Environ Res Public Health       Date:  2021-05-11       Impact factor: 3.390

Review 8.  Health impacts of workplace heat exposure: an epidemiological review.

Authors:  Jianjun Xiang; Peng Bi; Dino Pisaniello; Alana Hansen
Journal:  Ind Health       Date:  2013-12-21       Impact factor: 2.179

9.  Impact of Different Personal Protective Clothing on Wildland Firefighters' Physiological Strain.

Authors:  Belén Carballo-Leyenda; José G Villa; Jorge López-Satué; Jose A Rodríguez-Marroyo
Journal:  Front Physiol       Date:  2017-08-24       Impact factor: 4.566

10.  The Effects of Simulated Wildland Firefighting Tasks on Core Temperature and Cognitive Function under Very Hot Conditions.

Authors:  F Michael Williams-Bell; Brad Aisbett; Bernadette A Murphy; Brianna Larsen
Journal:  Front Physiol       Date:  2017-10-24       Impact factor: 4.566

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