2,355
Views
42
CrossRef citations to date
0
Altmetric
Research Paper

Performance in complex motor tasks deteriorates in hyperthermic humans

ORCID Icon, , & ORCID Icon
Pages 420-428 | Received 04 Jul 2017, Accepted 11 Aug 2017, Published online: 09 Oct 2017

References

  • Junge N, Jorgensen R, Flouris AD, Nybo L. Prolonged self-paced exercise in the heat – environmental factors affecting performance. Temperature. 2016;3:539-548. doi:10.1080/23328940.2016.1216257. PMID:28090557
  • Pilcher JJ, Nadler E, Busch C. Effects of hot and cold temperature exposure on performance: a meta-analytic review. Ergonomics. 2002;45:682-698. doi:10.1080/00140130210158419. PMID:12437852
  • Nybo L, Nielsen B. Hyperthermia and central fatigue during prolonged exercise in humans. J Appl Physiol (1985.) 2001;91:1055-1060. PMID:11509498
  • Nybo L, Rasmussen P, Sawka MN. Performance in the heat-physiological factors of importance for hyperthermia-induced fatigue. Compr Physiol. 2014;4:657-689. doi:10.1002/cphy.c130012. PMID:24715563
  • Periard JD, Travers GJ, Racinais S, Sawka MN. Cardiovascular adaptations supporting human exercise-heat acclimation. Auton Neurosci. 2016;196:52-62. doi:10.1016/j.autneu.2016.02.002. PMID:26905458
  • Racinais S, Alonso JM, Coutts AJ, Flouris AD, Girard O, Gonzalez-Alonso J, Hausswirth C, Jay O, Lee JK, Mitchell N, et al. Consensus recommendations on training and competing in the heat. Br J Sports Med. 2015;49:1164-1173. doi:10.1136/bjsports-2015-094915. PMID:26069301
  • Periard JD, Racinais S. Performance and pacing during cycle exercise in hyperthermic and hypoxic conditions. Med Sci Sports Exerc. 2016;48:845-853. doi:10.1249/MSS.0000000000000839. PMID:26656777
  • Gaoua N, Grantham J, El Massioui F, Girard O, Racinais S. Cognitive decrements do not follow neuromuscular alterations during passive heat exposure. Int J Hyperthermia. 2011;27:10-19. doi:10.3109/02656736.2010.519371. PMID:21070138
  • Periard JD, Girard O, Racinais S. Neuromuscular adjustments of the knee extensors and plantar flexors following match-play tennis in the heat. Br J Sports Med. 2014;48 Suppl 1:i45-i51. doi:10.1136/bjsports-2013-093160. PMID:24668379
  • Periard JD, Racinais S, Thompson MW. Adjustments in the force-frequency relationship during passive and exercise-induced hyperthermia. Muscle Nerve. 2014;50:822-829. doi:10.1002/mus.24228. PMID:24615660
  • Racinais S, Cresswell AG. Temperature affects maximum H-reflex amplitude but not homosynaptic postactivation depression. Physiol Rep. 2013;1:e00019. doi:10.1002/phy2.19. PMID:24303108
  • Kenny GP, Poirier MP, Metsios GS, Boulay P, Dervis S, Friesen BJ, Malcolm J, Sigal RJ, Seely AJ, Flouris AD. Hyperthermia and cardiovascular strain during an extreme heat exposure in young versus older adults. Temperature. 2017;4:79-88. doi:10.1080/23328940.2016.1230171. PMID:28349096
  • Karlsen A, Racinais S, Jensen MV, Norgaard SJ, Bonne T, Nybo L. Heat acclimatization does not improve VO2max or cycling performance in a cool climate in trained cyclists. Scand J Med Sci Sports. 2015;25 Suppl 1:269-276. doi:10.1111/sms.12409. PMID:25943678
  • El Helou N, Tafflet M, Berthelot G, Tolaini J, Marc A, Guillaume M, Hausswirth C, Toussaint JF. Impact of environmental parameters on marathon running performance. PLoS One. 2012;7:e37407. doi:10.1371/journal.pone.0037407. PMID:22649525
  • Racinais S, Cocking S, Périard JD. Sports and environmental temperature: from warming-up to heating-up. Temperature. 2017. doi:10.1080/23328940.2017.1356427
  • Sahu S, Sett M, Kjellstrom T. Heat exposure, cardiovascular stress and work productivity in rice harvesters in India: implications for a climate change future. Ind Health. 2013;51:424-431. doi:10.2486/indhealth.2013-0006. PMID:23685851
  • Taylor L, Watkins SL, Marshall H, Dascombe BJ, Foster J. The impact of different environmental conditions on cognitive function: A Focused Review. Front Physiol. 2015;6:372. PMID:26779029
  • Gaoua N, Racinais S, Grantham J, El Massioui F. Alterations in cognitive performance during passive hyperthermia are task dependent. Int J Hyperthermia. 2011;27:1-9. doi:10.3109/02656736.2010.516305. PMID:21070137
  • Hancock PA. Sustained attention under thermal stress. Psychol Bull. 1986;99:263-281. doi:10.1037/0033-2909.99.2.263. PMID:3961050
  • Hancock PA. Task categorization and the limits of human performance in extreme heat. Aviat Space Environ Med. 1982;53:778-784. PMID:7181809
  • Hancock PA, Vasmatzidis I. Effects of heat stress on cognitive performance: the current state of knowledge. Int J Hyperthermia. 2003;19:355-372. doi:10.1080/0265673021000054630. PMID:12745975
  • Hemmatjo R, Motamedzade M, Aliabadi M, Kalatpour O, Farhadian M. The effect of practical cooling strategies on physiological response and cognitive function during simulated firefighting tasks. Health Promot Perspect. 2017;7:66-73. doi:10.15171/hpp.2017.13. PMID:28326286
  • Jay O, Brotherhood JR. Occupational heat stress in Australian workplaces. Temperature. 2016;3:394-411. doi:10.1080/23328940.2016.1216256. PMID:28349081
  • van den Heuvel AM, Haberley BJ, Hoyle DJ, Taylor NA, Croft RJ. The independent influences of heat strain and dehydration upon cognition. Eur J Appl Physiol. 2017;117:1025-1037. doi:10.1007/s00421-017-3592-2. PMID:28343279
  • Reeves DL, Justesen DR, Levinson DM, Riffle DW, Wike EL. Endogenous hyperthermia in normal human subjects: I. Experimental study of evoked potentials and reaction time. Physiol Psychol. 2013;13:258-267. doi:10.3758/BF03326531
  • Mazloumi A, Golbabaei F, Mahmood Khani S, Kazemi Z, Hosseini M, Abbasinia M, Farhang Dehghan S. Evaluating effects of heat stress on cognitive function among workers in a hot industry. Health Promot Perspect. 2014;4:240-246. PMID:25649311
  • Burgess PW, Alderman N, Forbes C, Costello A, Coates LMA, Dawson DR, Anderson ND, Gilbert SJ, Dumontheil I, Channon S. The case for the development and use of “ecologically valid” measures of executive function in experimental and clinical neuropsychology. J Int Neuropsych Soc. 2006;12:194-209. doi:10.1017/S1355617706060310
  • Racinais S, Gaoua N, Grantham J. Hyperthermia impairs short-term memory and peripheral motor drive transmission. J Physiol. 2008;586:4751-4762. doi:10.1113/jphysiol.2008.157420. PMID:18703579
  • Gaoua N. Cognitive function in hot environments: a question of methodology. Scand J Med Sci Sports. 2010;20 Suppl 3:60-70. doi:10.1111/j.1600-0838.2010.01210.x. PMID:21029192
  • Thomas R, Johnsen LK, Geertsen SS, Christiansen L, Ritz C, Roig M, Lundbye-Jensen J. Acute exercise and motor memory consolidation: the role of exercise intensity. PLoS One. 2016;11:e0159589. doi:10.1371/journal.pone.0159589. PMID:27454423
  • Jensen JL, Marstrand PC, Nielsen JB. Motor skill training and strength training are associated with different plastic changes in the central nervous system. J Appl Physiol (1985.) 2005;99:1558-1568. doi:10.1152/japplphysiol.01408.2004. PMID:15890749
  • Roig M, Skriver K, Lundbye-Jensen J, Kiens B, Nielsen JB. A single bout of exercise improves motor memory. PLoS One. 2012;7:e44594. doi:10.1371/journal.pone.0044594. PMID:22973462
  • Thomas R, Beck MM, Lind RR, Korsgaard Johnsen L, Geertsen SS, Christiansen L, Ritz C, Roig M, Lundbye-Jensen J. Acute exercise and motor memory consolidation: the role of exercise timing. Neural Plast. 2016:6205452. doi:10.1155/2016/6205452. PMID:27446616
  • Vaillancourt DE, Thulborn KR, Corcos DM. Neural basis for the processes that underlie visually guided and internally guided force control in humans. J Neurophysiol. 2003;90:3330-3340. doi:10.1152/jn.00394.2003. PMID:12840082
  • Perez MA, Lundbye-Jensen J, Nielsen JB. Changes in corticospinal drive to spinal motoneurones following visuo-motor skill learning in humans. J Physiol. 2006;573:843-855. doi:10.1113/jphysiol.2006.105361. PMID:16581867
  • Van Essen DC, Gallant JL. Neural mechanisms of form and motion processing in the primate visual system. Neuron. 1994;13:1-10. doi:10.1016/0896-6273(94)90455-3. PMID:8043270
  • Kleim JA, Barbay S, Nudo RJ. Functional reorganization of the rat motor cortex following motor skill learning. J Neurophysiol. 1998;80:3321-335. PMID:9862925
  • Noble JW, Eng JJ, Boyd LA. Effect of visual feedback on brain activation during motor tasks: an FMRI study. Motor Control. 2013;17:298-312. doi:10.1123/mcj.17.3.298. PMID:23761430
  • Johansen-Berg H, Matthews PM. Attention to movement modulates activity in sensori-motor areas, including primary motor cortex. Exp Brain Res. 2002;142:13-24. doi:10.1007/s00221-001-0905-8. PMID:11797080
  • Hocking C, Silberstein RB, Lau WM, Stough C, Roberts W. Evaluation of cognitive performance in the heat by functional brain imaging and psychometric testing. Comp Biochem Physiol A Mol Integr Physiol. 2001;128:719-734. doi:10.1016/S1095-6433(01)00278-1. PMID:11282316
  • Nybo L, Moller K, Volianitis S, Nielsen B, Secher NH. Effects of hyperthermia on cerebral blood flow and metabolism during prolonged exercise in humans. J Appl Physiol (1985.) 2002;93:58-64. doi:10.1152/japplphysiol.00049.2002. PMID:12070186
  • Nybo L, Nielsen B. Middle cerebral artery blood velocity is reduced with hyperthermia during prolonged exercise in humans. J Physiol. 2001;534:279-286. doi:10.1111/j.1469-7793.2001.t01-1-00279.x. PMID:11433008
  • Schlader ZJ, Lucas RA, Pearson J, Crandall CG. Hyperthermia does not alter the increase in cerebral perfusion during cognitive activation. Exp Physiol. 2013;98:1597-1607. doi:10.1113/expphysiol.2013.074104. PMID:23851918
  • Nielsen B, Nybo L. Cerebral changes during exercise in the heat. Sports Medicine. 2003;33:1-11. doi:10.2165/00007256-200333010-00001. PMID:12477374
  • Cheung SS. Neuromuscular response to exercise heat stress. Med Sport Sci. 2008;53:39-60. doi:10.1159/000151549. PMID:19208998
  • Nybo L, Kjellstrom T, Bogataj LK, Flouris AD. Global heating: Attention is not enough; we need acute and appropriate actions. Temperature. 2017:1-3. doi:10.1080/23328940.2017.1338930
  • Ioannou LG, Tsoutsoubi L, Samoutis G, Bogataj LK, Kenny GP, Nybo L, Kjellstrom T, Flouris AD. Time-motion analysis as a novel approach for evaluating the impact of environmental heat exposure on labor loss in agriculture workers. Temperature. 2017;1-11; doi:10.1080/23328940.2017.1338210