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Sleep quantity and quality is not compromised during planned burn shifts of less than 12 h

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References

  • ACSM. (2010). ACSM’s guidelines for exercise testing and prescription. Philadelphia: Wolters Kluwer, Lippincott Williams & Wilkins.
  • Åkerstedt T. (2003). Shift work and disturbed sleep/wakefulness. Occup Med. 53:89–94.
  • Åkerstedt T, Kecklund G, Axelsson J. (2007). Impaired sleep after bedtime stress and worries. Biol. Psychol. 76:170–73.
  • Ancoli-Israel S, Cole R, Alessi C, et al. (2003). The role of actigraphy in the study of sleep and circadian rhythms. American Academy of Sleep Medicine Review Paper, Sleep, 26:342–92.
  • Armstrong T, Cvirn M, Ferguson S, et al. (2013). Can Australian bush fire fighters accurately self-monitor their cognitive performance during a 3-day simulated fire-ground campaign? In Sargent C, Zhou X, eds. Sleep, performance & well-being. Adelaide, Australia: Australasian Chronobiology Society, pp. 18–23.
  • Belenky G, Wesensten NJ, Thorne DR, et al. (2003). Patterns of performance degradation and restoration during sleep restriction and subsequent recovery: A sleep dose-response study. J Sleep Res. 12:1–12.
  • Brotherhood J, Budd G, Hendrie A, et al. (1997). Project aquarius 2. Limitations of maximum oxygen uptake for predicting the strains of building fireline with a rakehoe. Int J Wildland Fire. 7:77–85.
  • Budd G, Brotherhood J, Hendrie A, et al. (1997b). Project aquarius 6. Heat load from exertion, weather, and fire in men suppressing wildland fires. Int J Wildland Fire. 7:119–31.
  • Cater H, Clancy D, Duffy K, et al. (2007). Fatigue on the fireground: The DPI experience. In Thornton R, eds. Australasian fire authorities council and bushfire co-operative research centre annual conference. Hobart, Tasmania, Australia: Bushfire Co-operative Research Centre.
  • Christoforou T, Cvirn M, Ferguson SA, et al. (2013). The effect of sleep restriction and exposure to physical activity on the cognitive ability of volunteer firefighters across a 3-day simulated fire-ground tour. In Sargent C, Zhou X, eds. Sleep, performance & well-being. Adelaide, Australia: Australasian Chronobiology Society, pp. 13–17.
  • Darwent D, Lamond N, Dawson D. (2008). The sleep and performance of train drivers during an extended freight-haul operation. Appl Ergon. 39:614–22.
  • Dawson D, Chapman J, Thomas MJW. (2011). Fatigue-proofing: a new approach to reducing fatigue-related risk using the principles of error management. Sleep Med Rev. 16:167–75.
  • De Souza L, Benedito-Silva AA, Pires MLN, et al. (2003). Further validation of actigraphy for sleep studies. Sleep. 26:81–5.
  • Department of Environment and Primary Industries. (2013). Reducing Victoria’s bushfire risk on public land. In Fuel management report 2012–13. Victoria, Australia: The State Victorian Department of Environment and Primary Industries, pp. 1–28.
  • Ferguson SA, Baker AA, Lamond N, et al. (2010). Sleep in a live-in mining operation: The influence of start times and restricted non-work activities. Appl Ergon. 42:71–5.
  • Ferguson SA, Paech GM, Dorrian J, et al. (2011). Performance on a simple response time task: is sleep or work more important for miners? Appl Ergon. 42:210–13.
  • Ferguson SA, Paech GM, Sargent C, et al. (2012). The influence of circadian time and sleep dose on subjective fatigue ratings. Accid Anal Prev. 45:50–4.
  • Folkard S, Tucker P. (2003). Shift work, safety and productivity. Occup Med. 53:95–101.
  • Gaskill SE, Ruby BC. (2004). Hours of reported sleep during random duty assignments for four type I wildland firefighter crews. Available from: http://www.wildfirelessons.net/documents/Hours_of_ Reported_Sleep_2001-02.pdf [ last accessed 31 March 2010].
  • Ingre M, Kecklund G, Åkerstedt T, et al. (2008). Sleep length as a function of morning shift-start time in irregular shift schedules for train drivers: Self-rated health and individual differences. Chronobiol Int. 25:349–58.
  • Jay SM, Aisbett B, Sprajcer M, Ferguson SA. (2015). Sleeping at work: Not all about location, location, location. Sleep Med Rev. 19:59–66.
  • Jewett ME, Wyatt JK, Ritz-De Cecco A, et al. (1999). Time course of sleep inertia dissipation in human performance and alertness. J Sleep Res. 8:1–8.
  • John D, Freedson P. (2012). ActiGraph and actical physical activity monitors: A peek under the hood. Med Sci Sports Exercise. 44:S86–9.
  • Kecklund G, Åkerstedt T. (2004). Apprehension of the subsequent working day is associated with a low amount of slow wave sleep. Biol Psychol. 66:169–76.
  • King KJ, Cary GJ, Bradstock RA, et al. (2006). Simulation of prescribed burning strategies in south-west Tasmania, Australia: Effects on unplanned fires, fire regimes, and ecological management values. Int J Wildland Fire. 15:527–40.
  • Kosmadopoulos A, Sargent C, Darwent D, et al. (2014). Alternatives to polysomnography (PSG): A validation of wrist actigraphy and a partial-PSG system. Behav Res Methods. 46:1032–41.
  • Lerman SE, Eskin E, Flower DJ, et al. (2012). Fatigue risk management in the workplace. J Occup Environ Med. 54:231–58.
  • Lorist MM, Tops M. (2003). Caffeine, fatigue, and cognition. Brain Cognition. 53:82–94.
  • Main LC, Wolkow A, Raines J, et al. (2012). The stress of fire fighting - implications for long term health outcomes. In Thornton R eds. 2012 AFAC & Bushfire CRC conference research forum. Perth, Western Australia, Australia: Bushfire Co-operative Research.
  • Paech GM, Jay SM, Lamond N, et al. (2010). The effects of different roster schedules on sleep in miners. Appl Ergon. 41:600–6.
  • Pechony O, Shindell D. (2010). Driving forces of global wildfires over the past millennium and the forthcoming century. Proc Natl Acad Sci USA. 107:19167–170.
  • Petersen H, Kecklund G, Onofriod P, et al. (2013). Stress vulnerability and the effects of moderate daily stress on sleep polysomnography and subjective sleepiness. J Sleep Res. 22:50–57.
  • Raines J, Snow R, Nichols D, Aisbett B. (2015). Fluid intake, hydration, work physiology of wildfire fighters working in the heat over consecutive days. Ann Occup Hygeine. 1–12.
  • Reisen F, Brown SK. (2009). Australian firefighters’ exposure to air toxics during bushfire burns of autumn 2005 and 2006. Environ Int. 35:342–52.
  • Reisen F, Hansen D, Meyer CP. (2011). Exposure to bushfire smoke during prescribed burns and wildfires: Firefighters’ exposure risks and options. Environ Int. 37:314–21.
  • Rodríguez-Marroyo J, López-Satue J, Pernía R, et al. (2012). Physiological work demands of Spanish wildland firefighters during wildfire suppression. Int Arch Occup Environ Health. 85:221–28.
  • Sallinen M, Härmä M, Mutanen P, et al. (2003). Sleep–wake rhythm in an irregular shift system. J Sleep Res. 12:103–12.
  • Samn SW, Perelli LP. (1982). Estimating aircrew fatigue: A technique with application to airlift operations. In Brooks AFB. San Antonio, TX: USAF School of Aerospace Medicine.
  • Signal TL, Gale J, Gander PH. (2005). Sleep measurement in flight crew: Comparing actigraphic and subjective estimates to polysomnography. Aviat Space Environ Med. 76:1058–63.
  • Slijepcevic A, Tolhurst KG, Saunder G, et al. (2007). A prescribed burning risk assessment tool (BRAT). Proceedings Bushfire Cooperative Research Centre and Australasian Fire Authorities Council Annual Conference. Tassie Fire Conference, Wrest Point Conference Centre, Hobart, Tasmania.
  • Tassi P, Muzet A. (2000). Sleep inertia. Sleep Med Rev. 4:341–53.
  • Tucker P. (2003). The impact of rest breaks upon accident risk, fatigue and performance: A review. Work Stress. 17:123–37.
  • Van Dongen HPA, Maislin G, Mullington JM, Dinges DF. (2003). The cumulative cost of additional wakefulness: Dose-response effects on neurobehavioral functions and sleep physiology from chronic sleep restriction and total sleep deprivation. Sleep. 26:117–29.
  • Vincent, G.E., Aisbett, B., Hall, S.J., and Ferguson, S.A. (2015). Fighting fire and fatigue: Sleep quantity and quality during multi-day wildfire suppression. Ergonomics: 1–9.
  • Watson N, Badr M, Belenky G, et al. (2015). Recommended amount of sleep for a healthy adult: A joint consensus statement of the American academy of sleep medicine and sleep research society. Sleep. 38:843–844.

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