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Original Articles

Energy Cost of the Trondheim Firefighter Test for Experienced Firefighters

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Pages 211-225 | Published online: 08 Jan 2015

References

  • Louhevaara V, Smolander J, Tuomi T, Korhonen O, Jaakkola J. Effects of an SCBA on breathing pattern, gas exchange, and heart rate during exercise. J Occup Med. 1985;27(3):213–6.
  • Butcher SJ, Jones RL, Eves ND, Petersen SR. Work of breathing is increased during exercise with the self-contained breathing apparatus regulator. Appl Physiol Nutr Metab. 2006;31(6):693–701.
  • Louhevaara V, Smolander J, Korhonen O, Tuomi T. Maximal working times with a self-contained breathing apparatus. Ergonomics. 1986;29(1):77–85.
  • Eves ND, Jones RL, Petersen SR. The influence of the self-contained breathing apparatus (SCBA) on ventilatory function and maximal exercise. Can J Appl Physiol. 2005;30(5):507–19.
  • Dreger RW, Jones RL, Petersen SR. Effects of the self-contained breathing apparatus and fire protective clothing on maximal oxygen uptake. Ergonomics. 2006;49(10): 911–20.
  • Lemon PW, Hermiston RT. The human energy cost of fire fighting. J Occup Med. 1977;19(8):558–62.
  • Manning JE, Griggs TR. Heart rates in fire fighters using light and heavy breathing equipment: similar near-maximal exertion in response to multiple work load conditions. J Occup Med. 1983;25(3):215–8.
  • O’Connell ER, Thomas PC, Cady LD, Karwasky RJ. Energy costs of simulated stair climbing as a job-related task in fire fighting. J Occup Med. 1986;28(4):282–4.
  • Sothmann M, Saupe K, Raven P, Pawelczyk J, Davis P, Dotson C, et al. Oxygen consumption during fire suppression: error of heart rate estimation. Ergonomics. 1991;34(12):1469–74.
  • Sothmann MS, Saupe K, Jasenof D, Blaney J. Heart rate response of firefighters to actual emergencies. Implications for cardiorespiratory fitness. J Occup Med. 1992;34(8): 797–800.
  • Sothmann MS, Saupe KW, Jasenof D, Blaney J, Fuhrman SD, Woulfe T, et al. Advancing age and the cardiorespiratory stress of fire suppression: determining a minimum standard for aerobic fitness. Human Performance. 1990;3(4):217–36.
  • Gledhill N, Jamnik VK. Characterization of the physical demands of firefighting. Can J Sport Sci. 1992;17(3):207–13.
  • Lusa S, Louhevaara V, Smolander J, Kivimäki M, Korhonen O. Physiological responses of firefighting students during simulated smoke-diving in the heat. Am Ind Hyg Assoc J. 1993;54(5):228–31.
  • Louhevaara V, Soukainen J, Lusa S, Tulppo M, Tuomi P, Kajaste T. Development and evaluation of a test drill for assessing physical work capacity of fire-fighters. Int J Ind Ergon. 1994;13(2):139–46.
  • Smith DL, Petruzzello SJ, Kramer JM, Misner JE. The effects of different thermal environments on the physiological and psychological responses of firefighters to a training drill. Ergonomics. 1997;40(4): 500–10.
  • Bilzon JL, Scarpello EG, Smith CV, Ravenhill NA, Rayson MP. Characterization of the metabolic demands of simulated shipboard Royal Navy fire-fighting tasks. Ergonomics. 2001;44(8):766–80.
  • von Heimburg ED, Rasmussen AK, MedbøJI. Physiological responses of firefighters and performance predictors during a simulated rescue of hospital patients. Ergonomics. 2006;49(2):111–26.
  • Dreger RW, Petersen SR. Oxygen cost of the CF-DND fire fit test in males and females. Appl Physiol Nutr Metab. 2007;32(3): 454–62.
  • Holmér I, Gavhed D. Classification of metabolic and respiratory demands in fire fighting activity with extreme workloads. Appl Ergon. 2007;38(1):45–52.
  • Elsner KL, Kolkhorst FW. Metabolic demands of simulated firefighting tasks. Ergonomics. 2008;51(9):1418–25.
  • Harvey DG, Kraemer JL, Sharratt MT, Hughson RL. Respiratory gas exchange and physiological demands during a fire fighter evaluation circuit in men and women. Eur J Appl Physiol. 2008;103(1): 89–98.
  • Richmond VL, Rayson MP, Wilkinson DM, Carter JM, Blacker SD. Physical demands of firefighter search and rescue in ambient environmental conditions. Ergonomics. 2008;51(7):1023–31.
  • Williams-Bell FM, Boisseau G, McGill J, Kostiuk A, Hughson RL. Physiological responses and air consumption during simulated firefighting tasks in a subway system. Appl Physiol Nutr Metab. 2010; 35(5):671–8.
  • Williams-Bell FM, Boisseau G, McGill J, Kostiuk A, Hughson RL. Air management and physiological responses during simulated firefighting tasks in a high-rise structure. Appl Ergon. 2010;41(2):251–9.
  • Williams-Bell FM, Villar R, Sharratt MT, Hughson RL. Physiological demands of the firefighter Candidate Physical Ability Test. Med Sci Sports Exerc. 2009;41(3):653–62.
  • Perroni F, Tessitore A, Cortis C, Lupo C, D’artibale E, Cignitti L, et al. Energy cost and energy sources during a simulated firefighting activity. J Strength Cond Res. 2010;24(12):3457–63.
  • Petersen A, Payne W, Phillips M, Netto K, Nichols D, Aisbett B. Validity and relevance of the pack hike wildland firefighter work capacity test: a review. Ergonomics. 2010; 53(10):1276–85.
  • Bugajska J, Zużewicz K, Szmauz-Dybko M, Konarska M. Cardiovascular stress, energy expenditure and subjective perceived ratings of fire fighters during typical fire suppression and rescue tasks. International Journal of Occupational Safety and Ergonomics (JOSE). 2007;13(3):323–31. Retrieved April 10, 2013, from: http://www.ciop.pl/23212.
  • Bos J, Mol E, Visser B, Frings-Dresen M. The physical demands upon (Dutch) firefighters in relation to the maximum acceptable energetic workload. Ergonomics. 2004; 47(4):446–60.
  • Eves ND, Petersen SR, Jones RL. The effect of hyperoxia on submaximal exercise with the self-contained breathing apparatus. Ergonomics. 2002;45(12):840–9.
  • Sheaff AK, Bennett A, Hanson ED, Kim YS, Hsu J, Shim JK, Edwards ST, Hurley BF. Physiological determinants of the candidate physical ability test in firefighters. J Strength Cond Res. 2010;24(11):3112–22.
  • Ben-Ezra V, Verstraete R. Stair climbing: an alternative exercise modality for firefighters. J Occup Med. 1988;30(2):103–5.
  • Misner JE, Boileau RA, Plowman SA. Development of placement tests for fire-fighting: a long-term analysis by race and sex. Appl Ergon. 1989;20(3):218–24.
  • Sjödin B, Jacobs I. Onset of blood lactate accumulation and marathon running performance. Int J Sports Med. 1981;2(1): 23–6.
  • Medbø JI, Synnes OM, von Heimburg ED. Technical modification of the portable Metamax II metabolic analyser for operation with a breathing apparatus. Acta Kinesiologiae Universitatis Tartuensis. 2011;17: 117–30.
  • Noble BJ, Borg GA, Jacobs I, Ceci R, Kaiser P. A category-ratio perceived exertion scale: relationship to blood and muscle lactates and heart rate. Med Sci Sports Exerc. 1983;15(6):523–8.
  • Durnin JV, Womersley J. Body fat assessed from total body density and its estimation from skinfold thickness: measurements on 481 men and women aged from 16 to 72 years. Br J Nutr. 1974;32(1):77–97.
  • Medbø JI, Mamen A, Welde B, von Heimburg ED, Stokke R. Examination of the Metamax I and II oxygen analysers during exercise studies in the laboratory. Scand J Clin Lab Invest. 2002;62(8): 585–98.
  • MedbøJI. Examination of the time response of the Metamax I and II metabolic analysers at the onset and end of exercise. Acta Kinesiologiae Universitatis Tartuensis. 2002;7:50–60.
  • Medbø JI, Mamen A, Holt Olsen O, Evertsen F. Examination of four different instruments for measuring blood lactate concentration. Scand J Clin Lab Invest. 2000;60(5):367–80.
  • Gagge AP, Stolwijk JA, Saltin B. Comfort and thermal sensations and associated physiological responses during exercise at various ambient temperatures. Environ Res. 1969;2(3):209–29.
  • Gavhed D, Brodin L, Johansson E, Bohlund L, Thoresson T, Åslund C, et al. Brandmannens fysiska förmåga. Delrapport 1—Typinsatser [Fire fighters’ physical capability. Report 1. Types of exercises]. Karlstad, Sweden: Swedish Civil Contingencies Agency; 2001. In Swedish, with an abstract in English. Retrieved March 10, 2013, from: https://www.msb.se/ribdata/filer/pdf/17732.pdf.
  • Davis PO, Dotson CO. Heart rate response to fire fighting activities. Ambulatory Electrocardiology. 1978;1:15–8.
  • Saupe K, Sothmann M, Jasenof D. Aging and the fitness of fire fighters: the complex issues involved in abolishing mandatory retirement ages. Am J Public Health. 1991; 81(9):1192–4.
  • Welde B, Evertsen F, Heimburg ED von, Medbø JI. Energy cost of free technique and classical cross-country skiing at racing speeds. Med Sci Sports Exerc. 2003;35(5):818–25.
  • Heimburg ED von, Medbø JI, Sandsund M, Reinertsen R. Performance on a work-simulating firefighter-test versus approved laboratory tests for firefighters and applicants. International Journal of Occupational Safety and Ergonomics (JOSE). 2013;19(2):227–43.

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