Publication Cover
Chronobiology International
The Journal of Biological and Medical Rhythm Research
Volume 33, 2016 - Issue 10
320
Views
22
CrossRef citations to date
0
Altmetric
Original Articles

Is there a circadian rhythm of postural control and perception of the vertical?

, , , &
Pages 1320-1330 | Received 15 Mar 2016, Accepted 19 Jul 2016, Published online: 18 Aug 2016

References

  • Akerstedt T, Anund A, Axelsson J, Kecklund G. (2014). Subjective sleepiness is a sensitive indicator of insufficient sleep and impaired waking function. J Sleep Res. 23:240–52. doi:10.1111/jsr.12158
  • Akerstedt T, Gillberg M. (1990). Subjective and objective sleepiness in the active individual. Int J Neurosci. 52:29–37.
  • Angelaki DE, Cullen KE. (2008). Vestibular system: The many facets of a multimodal sense. Annu Rev Neurosci. 31:125–50.
  • Atkinson G, Coldwells A, Reilly T, Waterhouse J. (1993). A comparison of circadian rhythms in work performance between physically active and inactive subjects. Ergonomics. 36:273–81. doi:10.1080/00140139308967882
  • Atkinson G, Reilly T. (1996). Circadian variation in sports performance. Sports Med (Auckland, N.Z.). 21:292–312.
  • Avni N, Avni I, Barenboim E, et al. (2006). Brief posturographic test as an indicator of fatigue. Psychiatry Clin Neurosci. 60:340–6. http://doi.org/10.1111/j.1440-1819.2006.01511.x
  • Baxter C, Reilly T. (1983). Influence of time of day on all-out swimming. Br J Sports Med. 17:122–7.
  • Benoit O, Foret J, Merle B, Reinberg A. (1981). Circadian rhythms (temperature, heart rate, vigilance, mood) of short and long sleepers: Effects of sleep deprivation. Chronobiologia. 8:341–50.
  • Böhmer A, Rickenmann J. (1995). The subjective visual vertical as a clinical parameter of vestibular function in peripheral vestibular diseases. J Vestibular Res. 5:35–45.
  • Bonnet MH, Arand DL. (2003). Clinical effects of sleep fragmentation versus sleep deprivation. Sleep Med Rev. 7:297–310.
  • Borel L, Lopez C, Peruch P, Lacour M. (2008). Vestibular syndrome: A change in internal spatial representation. Neurophysiologie Clinique/Clinical Neurophysiology, 38:375389. http://doi.org/10.1016/j.neucli.2008.09.002
  • Bougard C, Moussay S, Gauthier A, et al. (2009). Effects of waking time and breakfast intake prior to evaluation of psychomotor performance in the early morning. Chronobiol Int. 26:324–36. doi:10.1080/07420520902774540
  • Carriot J, Jamali M, Brooks JX, Cullen KE. (2015). Integration of canal and otolith inputs by central vestibular neurons is subadditive for both active and passive self-motion: Implication for perception. J Neurosci. 35:3555–65. doi:10.1523/JNEUROSCI.3540-14.2015
  • Dai MJ, Curthoys IS, Halmagyi GM. (1989). Linear acceleration perception in the roll plane before and after unilateral vestibular neurectomy. Exp. Brain Res. 77:315–28.
  • Dauvilliers Y, Billiard M. (2004). Aspects du sommeil normal. EMC - Neurologie. 1:458–80. doi:10.1016/j.emcn.2004.05.001
  • Deschamps T, Magnard J, Cornu C. (2013). Postural control as a function of time-of-day: Influence of a prior strenuous running exercise or demanding sustained-attention task. J of Neuroengineering and Rehabilitation, 10:26. http://doi.org/10.1186/1743-0003-10-26
  • Doran SM., Van Dongen, HP, Dinges DF. (2001). Sustained attention performance during sleep deprivation: Evidence of state instability. Archives Italiennes De Biologie, 139:253267.
  • Drummond SP, Brown GG. (2001). The effects of total sleep deprivation on cerebral responses to cognitive performance. Neuropsychopharmacol. 25:S68–73. doi:10.1016/S0893-133X(01)00325-6
  • Drummond SP, Brown GG, Gillin JC, et al. (2000). Altered brain response to verbal learning following sleep deprivation. Nature. 403:655–7. doi:10.1038/35001068
  • Forsman P, Haeggström E, Wallin A, et al. (2007). Daytime Changes in Postural Stability and Repeatability of Posturographic Measurements. J Occup Environ Med. 49:591–6. http://doi.org/10.1097/JOM.0b013e3180577796
  • Gagey PM., Weber B. (2010). Study of intra-subject random variations of stabilometric parameters. Medical & Biological Engineering & Computing, 48:833835. http://doi.org/10.1007/s11517-010-0656-4
  • Gauchard GC, Gangloff P, Jeandel C, Perrin PP. (2003). Physical activity improves gaze and posture control in the elderly. Neurosci Res. 45:409–17.
  • Gauchard GC, Vançon G, Meyer P, et al. (2010). On the role of knee joint in balance control and postural strategies: Effects of total knee replacement in elderly subjects with knee osteoarthritis. Gait Posture. 32:155–60. doi:10.1016/j.gaitpost.2010.04.002
  • Gauthier A, Davenne D, Gentil C, Van Hoecke J. (1997). Circadian rhythm in the torque developed by elbow flexors during isometric contraction. Effect of sampling schedules. Chronobiol Int. 14:287–94.
  • Gauthier A, Davenne D, Martin A, et al. (1996). Diurnal rhythm of the muscular performance of elbow flexors during isometric contractions. Chronobiol Int. 13:135–46.
  • Gauthier A, Davenne D, Martin A, Van Hoecke J. (2001). Time of day effects on isometric and isokinetic torque developed during elbow flexion in humans. Eur J Appl Physiol. 84:249–52.
  • Gribble PA, Tucker WS, White PA. (2007). Time-of-day influences on static and dynamic postural control. J Athletic Training. 42:35–41.
  • Horak FB, Nashner LM, Diener HC. (1990). Postural strategies associated with somatosensory and vestibular loss. Experimental Brain Research. Experimentelle Hirnforschung. Experimentation Cerebrale, 82:167177.
  • Horne JA. (1993). Human sleep, sleep loss and behaviour. Implications for the prefrontal cortex and psychiatric disorder. Br J Psychiatry. 162:413–9.
  • Horne JA, Östberg O. (1976). A self-assessment questionnaire to determine morningness-eveningness in human circadian rhythms. Int J Chronobiol. 4:97–110.
  • Ilmarinen J, Ilmarinen R, Korhonen O, Nurminen M. (1980). Circadian variation of physiological functions related to physical work capacity. Scand J Work, Environ Health. 6:112–22.
  • Kemoun G, Carette P. (2010). Place de la posturographie a domicile dans un concept de prevention de la chute de la personne agee. NPG Neurologie - Psychiatrie - Geriatrie, 10:6164. http://doi.org/10.1016/j.npg.2009.12.006
  • Kohen-Raz R, Himmelfarb M, Tzur S, et al. (1996). An initial evaluation of work fatigue and circadian changes as assessed by multiplate posturography. Perceptual Motor Skills. 82:547–57.
  • Kräuchi K, Wirz-Justice A. (1994). Circadian rhythm of heat production, heart rate, and skin and core temperature under unmasking conditions in men. Am J Physiol. 267:R819–29.
  • Kwon YH, Choi YW, Nam SH, Lee MH. (2014). The influence of time of day on static and dynamic postural control in normal adults. Journal of Physical Therapy Science, 26:409412. http://doi.org/10.1589/jpts.26.409
  • Laughton CA, Slavin M, Katdare K, Nolan L, Bean JF, Kerrigan DC, Phillips E, Lipsitz LA, Collins JJ. (2003). Aging, muscle activity, and balance control: physiologic changes associated with balance impairment. Gait & Posture, 18:101108. http://doi.org/10.1016/S0966-6362(02)00200-X
  • Lericollais R, Gauthier A, Bessot, N, Zouabi A, Davenne D. (2013). Morning Anaerobic Performance Is Not Altered by Vigilance Impairment. PLoS ONE, 8:e58638. http://doi.org/10.1371/journal.pone.0058638
  • Little MA, Rummel JA. (1971). Circadian variations in thermal and metabolic responses to heat exposure. J Appl Physiol. 31:556–61.
  • Liu Y, Higuchi S, Motohashi Y. (2001). Changes in postural sway during a period of sustained wakefulness in male adults. Occup Med (Oxford, England). 51:490–5.
  • Morad Y, Azaria B, Avni I, et al. (2007). Posturography as an indicator of fatigue due to sleep deprivation. Aviat Space Environ Med. 78:859–63.
  • Nakano T, Araki K, Michimori A, et al. (2001). Nineteen-hour variation of postural sway, alertness and rectal temperature during sleep deprivation. Psychiatry Clin Neurosci. 55:277–8. doi:10.1046/j.1440-1819.2001.00858.x
  • Nelson W, Tong YL, Lee JK, Halberg F. (1979). Methods for cosinor-rhythmometry. Chronobiologia. 6:305–23.
  • Perrin PP, Jeandel C, Perrin CA, Béné MC. (1997). Influence of visual control, conduction, and central integration on static and dynamic balance in healthy older adults. Gerontology. 43:223–31.
  • Portaluppi F, Smolensky MH, Touitou Y. (2010). Ethics and methods for biological rhythm research on animals and human beings. Chronobiol Int. 27:1911–29. doi:10.3109/07420528.2010.516381
  • Prado JM, Stoffregen TA, Duarte M. (2007). Postural Sway during Dual Tasks in Young and Elderly Adults. Gerontology, 53:274281. http://doi.org/10.1159/000102938
  • Reilly T, Bambaeichi E. (2003). Methodological issues in studies of rhythms in human performance. Biological Rhythm Res. 34:321–36. doi:10.1076/brhm.34.4.321.26229
  • Reilly T, Brooks GA. (1982). Investigation of circadian rhythms in metabolic responses to exercise. Ergonomics. 25:1093–107. doi:10.1080/00140138208925067
  • Reilly T, Robinson G, Minors DS. (1984). Some circulatory responses to exercise at different times of day. Med Sci Sports Exercise. 16:477–82.
  • Russo L, D’Eramo U, Padulo J, Foti,C, Schiffer R, Scoppa F. (2015). Day-time effect on postural stability in young sportsmen. Muscles, Ligaments and Tendons Journal, 5:3842.
  • Souissi N, Bessot N, Chamari K, et al. (2007). Effect of time of day on aerobic contribution to the 30-s Wingate test performance. Chronobiol Int. 24: 739–48. doi:10.1080/07420520701535811
  • Souissi N, Gauthier A, Sesboüé B, et al. (2004). Circadian rhythms in two types of anaerobic cycle leg exercise: Force-velocity and 30-s Wingate tests. Int J Sports Med. 25: 14–9. doi:10.1055/s-2003-45226
  • Souissi N, Souissi M, Souissi H, et al. (2008). Effect of time of day and partial sleep deprivation on short-term, high-power output. Chronobiol Int. 25:1062–76. doi:10.1080/07420520802551568
  • Srulijes K, Mack DJ, Klenk J, Schwickert L, Ihlen EAF, Schwenk M, Lindemann U, Meyer M, Srijana KC, Hobert MA, Brockmann K, Wurster I, Pomper JK, Synofzik M, Schneider E, Ilg U, Berg D, Maetzler W, Becker, C. (2015). Association between vestibulo-ocular reflex suppression, balance, gait, and fall risk in ageing and neurodegenerative disease: protocol of a one-year prospective follow-up study. BMC Neurology, 15:192. http://doi.org/10.1186/s12883-015-0447-5
  • Thomas M, Sing H, Belenky G, et al. (2000). Neural basis of alertness and cognitive performance impairments during sleepiness. I. Effects of 24 h of sleep deprivation on waking human regional brain activity. J Sleep Res. 9:335–52.
  • Williams E. (1949). Experimental Designs Balanced for the Estimation of Residual Effects of Treatments. Aust J. Chem. 2:149–68.
  • Wright, WG, Horak, FB. (2007). Interaction of posture and conscious perception of gravitational vertical and surface horizontal. Experimental Brain Research, 182:321332. http://doi.org/10.1007/s00221-007-0990-4
  • Wu JC, Gillin JC, Buchsbaum MS, et al. (1991). The effect of sleep deprivation on cerebral glucose metabolic rate in normal humans assessed with positron emission tomography. Sleep. 14:155–62.
  • Yamaji K, Sakamoto H, Nakaguchi M, et al. (1981). Biological rhythms of PWC170 and maximal oxygen intake. J Hum Ergology. 10:213–9.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.