2,867
Views
12
CrossRef citations to date
0
Altmetric
Research Paper

Time perception and timed decision task performance during passive heat stress

ORCID Icon, , , ORCID Icon &
Pages 53-63 | Received 11 May 2020, Accepted 27 May 2020, Published online: 16 Jun 2020

References

  • Hancock PA, Vasmatzidis I. Effects of heat stress on cognitive performance: the current state of knowledge. Int J Hyperth. 2003;19:355–372.
  • Hancock PA, Ross JM, Szalma JL. A meta-analysis of performance response under thermal stressors. Hum Factors J Hum Factors Ergon Soc. 2007;49:851–877.
  • Johnson RF, Kobrick JL. Psychological aspects of military performance in hot environments. In: Pandolf KB, Burr RE, Wenger CB, et al., editors. Medical aspects of harsh environments. Vol. 1. Houston TX: Department of the Army, Office of The Surgeon General, Borden Institute; 2002. p. 135–159.
  • Martin K, McLeod E, Périard J, et al. The impact of environmental stress on cognitive performance: a systematic review. Hum Factors. 2019;61:1205–1246.
  • Gaoua N, Racinais S, Grantham J, et al. Alterations in cognitive performance during passive hyperthermia are task dependent. Int J Hyperth. 2011;27:1–9.
  • Malcolm RA, Cooper S, Folland JP, et al. Passive heat exposure alters perception and executive function. Front Physiol. 2018;9:585.
  • Gaoua N, Grantham J, Racinais S, et al. Sensory displeasure reduces complex cognitive performance in the heat. J Environ Psychol. 2012;32:158–163.
  • Racinais S, Gaoua N, Grantham J. Hyperthermia impairs short-term memory and peripheral motor drive transmission. J Physiol. 2008;586:4751–4762.
  • Ramsey JD, Kwon YG. Recommended alert limits for perceptual motor loss in hot environments. Int J Ind Ergon. 1992;9:245–257.
  • van Maanen L, van der Mijn R, van Beurden MHPH, et al. Core body temperature speeds up temporal processing and choice behavior under deadlines. Sci Rep. 2019;9:1–12.
  • Boehm U, Hawkins GE, Brown S, et al. Of monkeys and men: impatience in perceptual decision-making. Psychonomic Bull Rev. 2016;23(3):738–749.
  • van Maanen L, Fontanesi L, Hawkins GE, et al. Striatal activation reflects urgency in perceptual decision making. Neuroimage. 2016;139:294–303.
  • Miletić S, van Maanen L. Caution in decision-making under time pressure is mediated by timing ability. Cogn Psychol. 2019;110:16–29.
  • Craig AB Jr., Dvorak M. Thermal regulation during water immersion. J Appl Physiol. 1966;21:1577–1585.
  • Kononowicz TW, van Rijn H. Slow potentials in time estimation: the role of temporal accumulation and habituation. Front Integr Neurosci. 2011.
  • Macar F, Vidal F, Casini L. The supplementary motor area in motor and sensory timing: evidence from slow brain potential changes. Exp Brain Res. 1999;125:271–280.
  • Domitrovich JW, Cuddy JS, Ruby BC. Core-temperature sensor ingestion timing and measurement variability. J Athl Train. 2010;45:594–600.
  • van den Heuvel AMJ, Haberley BJ, Hoyle DJR, et al. The independent influences of heat strain and dehydration upon cognition. Eur J Appl Physiol. 2017;117:1025–1037.
  • Nybo L, Rasmussen P, Sawka MN. Performance in the heat-physiological factors of importance for hyperthermia-induced fatigue. Compr Physiol. 2014.
  • Piil JF, Lundbye-Jensen J, Trangmar SJ, et al. Performance in complex motor tasks deteriorates in hyperthermic humans. Temperature. 2017;4(4):420–428. doi: 10.1080/23328940.2017.1368877 .
  • Bogacz R, Wagenmakers EJ, Forstmann BU, et al. The neural basis of the speed-accuracy tradeoff. Trends Neurosci. 2010;33:10–16.
  • van Maanen L, Brown SD, Eichele T, et al. Neural correlates of trial-to-trial fluctuations in response caution. J Neurosci. 2011;31:17488–17495.
  • Pilcher JJ. Nadler E, Busch C. Effects of hot and cold temperature exposure on performance: a meta-analytic review. Ergonomics, Taylor & Francis; 2010.
  • Kissling LS, Akerman AP, Cotter JD. Heat-induced hypervolemia: does the mode of acclimation matter and what are the implications for performance at Tokyo 2020? Temperature. 2019;1–20. doi:10.1080/23328940.2019.1653736.
  • Gonzalez-Alonso J, Crandall CG, Johnson JM. The cardiovascular challenge of exercising in the heat J Physiol. 2008;586:45–53.
  • Grandjean AC, Grandjean NR. Dehydration and Cognitive Performance J Am Coll Nutr. 2007;26:549S–554S.
  • Piil JF, Lundbye-Jensen J, Christiansen L, et al. High prevalence of hypohydration in occupations with heat stress – Perspectives for performance in combined cognitive and motor tasks. PLoS One. 2018;13(10):e0205321.
  • Tamm M, Jakobson A, Havik M, et al. The compression of perceived time in a hot environment depends on physiological and psychological factors. Q J Exp Psychol. 2014;67(1):197–208.
  • Wearden JH, Penton-Voak IS. Feeling the Heat: Body Temperature and the Rate of Subjective Time, Revisited. Q J Exp Psychol Sect B. 1995;48(2):129–141.
  • Hart SG, Staveland LE. Development of NASA-TLX (Task Load Index): Results of empirical and theoretical research. In Hancock PA, Meshkati N, editor.. Human Mental Workload. Elsevier Science Publishers B.V; 1988. p. 139–183.