Removing the thermal component from heart rate provides an accurate V˙O2 estimation in forest work
Autor: | Denise Dubeau, Luc LeBel, Philippe-Antoine Dubé, Ahmet Kolus, Daniel Imbeau |
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Rok vydání: | 2016 |
Předmět: |
05 social sciences
Work (physics) Physical Therapy Sports Therapy and Rehabilitation Human Factors and Ergonomics 030229 sport sciences Gas analyzer 03 medical and health sciences 0302 clinical medicine Animal science Physical load Heart rate Thermal Environmental science 0501 psychology and cognitive sciences Clothing insulation Work site Safety Risk Reliability and Quality Engineering (miscellaneous) 050107 human factors Simulation Morning |
Zdroj: | Applied Ergonomics. 54:148-157 |
ISSN: | 0003-6870 |
DOI: | 10.1016/j.apergo.2015.12.005 |
Popis: | Heart rate (HR) was monitored continuously in 41 forest workers performing brushcutting or tree planting work. 10-min seated rest periods were imposed during the workday to estimate the HR thermal component (ΔHRT) per Vogt et al. (1970, 1973). VO2 was measured using a portable gas analyzer during a morning submaximal step-test conducted at the work site, during a work bout over the course of the day (range: 9-74 min), and during an ensuing 10-min rest pause taken at the worksite. The VO2 estimated, from measured HR and from corrected HR (thermal component removed), were compared to VO2 measured during work and rest. Varied levels of HR thermal component (ΔHRTavg range: 0-38 bpm) originating from a wide range of ambient thermal conditions, thermal clothing insulation worn, and physical load exerted during work were observed. Using raw HR significantly overestimated measured work VO2 by 30% on average (range: 1%-64%). 74% of VO2 prediction error variance was explained by the HR thermal component. VO2 estimated from corrected HR, was not statistically different from measured VO2. Work VO2 can be estimated accurately in the presence of thermal stress using Vogt et al.'s method, which can be implemented easily by the practitioner with inexpensive instruments. |
Databáze: | OpenAIRE |
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