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Chronobiology International
The Journal of Biological and Medical Rhythm Research
Volume 17, 2000 - Issue 6
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Original

CIRCADIAN RHYTHMS OF PERFORMANCE: NEW TRENDS

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Pages 719-732 | Published online: 07 Jul 2009

REFERENCES

  • Achermann P. Technical note: a problem with identifying nonlinear interactions of circadian and homeostatic processes. J Biol Rhythms 1999; 14: 602–3
  • Achermann P, Borbély A A. Simulation of daytime vigilance by the additive interaction of a homeostatic and a circadian process. Biol Cybern 1994; 71: 115–21
  • Akerstedt T, Folkard S. The three-process model of alertness and its extension to performance, sleep latency and sleep length. Chronobiol Int. 1997; 14: 115–23
  • Atkinson G, Reilly T. Circadian variation in sports performance. Sports Med. 1996; 21: 292–312
  • Atkinson G, Speirs L. Diurnal variation in tennis service. Percept Motor Skills 1998; 86: 1335–38
  • Babkoff H, Mikulincer M, Caspy T, et al. The topology of performance curves during 72 hours of sleep loss: a memory and search task. Q J Exp Psychol 1988; 737–56
  • Baddeley A D. The influence of acoustic and semantic similarity on long-term memory for word sequences. Q J Exp Psychol 1966a; 18: 302–9
  • Baddeley A D. Short-term memory for word sequences as a function of acoustic, semantic and formal similarity. Q J Exp Psychol 1966b; 18: 362–65
  • Blake M JF. Time of day effects on performance in a range of tasks. Psychonom Sci. 1967; 9: 349–50
  • Blake M JF. Temperament and time of day. Biological rhythms and human performance, W P Colquhoun. Academic, London 1971; 109–48
  • Broughton R. Biorhythmic variations in consciousness and psychological functions. Can Psychol Rev. 1975; 16: 217–39
  • Broughton R. The circasemidian sleep rhythm and its relationship to the circadian and ultradian sleep-wake rhythms. Sleep '86, R Kalba, R Oval, H Schulz, et al. Gustav Fisher Verlag, New York 1988; 41–43
  • Broughton R J. SCN controlled circadian arousal and the afternoon “nap zone.”. Sleep Res Online 1998; 1: 166–78
  • Campbell S S. Duration and placement of sleep in a “disentrained” environment. Psychophysiology 1984; 21: 106–13
  • Carskadon M A, Dement W C. Multiple sleep latency tests during the constant routine. Sleep 1992; 15(6)396–99
  • Christie M J, McBrearty E MT. Psychophysiological investigations of post lunch state in male and female subjects. Ergonomics 1979; 22: 307–25
  • Colquhoun W P. Biological rhythms and human performance. Academic, London 1971
  • Corbera X, Grau C, Vendrell P. Diurnal oscillations in hemispheric performance. J Clin Exp Neuropsychol 1993; 15: 300–10
  • Craig A, Baer K, Diekmann A. The effects of lunch on sensory-perceptual functioning in man. Int J Occup Environ Health 1981; 49: 105–14
  • Dijk D J, Duffy J F, Czeisler C A. Circadian and sleep/wake dependent aspects of subjective alertness and cognitive performance. J Sleep Res. 1992; 1: 112–17
  • Dijk D-J, Jewett M E, Czeisler C A, et al. Reply to technical note: nonlinear interactions between circadian and homeostatic processes: models or metrics. J Biol Rhythms 1999; 16: 604–5
  • Dinges D F, Broughton R. Sleep and alertness: chronobiological, behavioral, and medical aspects of napping. Raven, New York 1989
  • Folkard S. Diurnal variation in logical reasoning. Br J Psychol 1975; 66: 1–8
  • Folkard S. Time of day and level of processing. Mem Cogn 1979; 7: 247–52
  • Folkard S. Diurnal variation in human performance. Stress and fatigue in human performance, G RJ Hockey. Wiley, ChichesterEngland 1983; 245–72
  • Folkard S. Circadian performance rhythms: some practical and theoretical implications. Phil Trans R Soc Lond. 1990; 327: 543–53
  • Folkard S, Akerstedt T. A three-process model of the regulation of alertness-sleepiness. Sleep, arousal, and performance: a tribute to Bob Wilkinson, R J Broughton, R D Ogilvie. Birkhauser, Boston 1992; 11–26
  • Folkard S, Akerstedt T, MacDonald I, et al. Beyond the three-process model of alertness: estimating phase, time on shift, and successive night effects. J Biol Rhythms 1999; 14: 577–87
  • Folkard S, Knauth P, Monk T H, et al. The effect of memory load on the circadian variation in performance efficiency under a rapidly rotating shift system. Ergonomics 1976; 19: 479–88
  • Folkard S, Monk T H. Circadian performance rhythms. Hours of work—temporal factors in work scheduling, S Folkard, T H Monk. John Wiley and Sons, New York 1985; 37–52
  • Folkard S, Monk T H. The measurement of circadian rhythms in psychological functioning. Chronobiotechnology and chronobiological engineering, L E Scheving, F Halberg, C F Ehret. Martinus Nijhoff, DordrechtThe Netherlands 1987; 189–201
  • Gates A I. Variations in efficiency during the day, together with practice effects, sex differences, and correlations. Univ Calif Pub Psychol 1916; 1: 1–156
  • Hildebrandt G, Rohmert W, Rutenfranz J. Twelve and 24 hour rhythms in error frequency of locomotive drivers and the influence of tiredness. Int J Chronobiol 1974; 2: 175–80
  • Horne J A, Brass C G, Pettit A N. Circadian performance differences between “morning” and “evening” “types.”. Ergonomics 1980; 23: 129–36
  • Jewett M E, Kronauer R E. Interactive mathematical models of subjective alertness and cognitive throughput in humans. J Biol Rhythms 1999; 14: 588–97
  • Johnson M P, Duffy J F, Dijk D J, et al. Short-term memory, alertness and performance: a reappraisal of their relationship to body temperature. J Sleep Res. 1992; 1: 24–29
  • Kleitman N. Sleep and wakefulness. University of Chicago Press, Chicago 1963
  • Kleitman N, Jackson D P. Body temperature and performance under different routines. J Appl Physiol 1950; 3: 309–28
  • Laird D A. Relative performance of college students as conditioned by time of day and day of week. J Exp Psychol 1925; 8: 50–63
  • Lavie P. The search for cycles in mental performance from Lombard to Kleitman. Chronobiologia 1980; 7: 247–56
  • Lavie P. Ultrashort sleep-waking schedule. III. Gates and “forbidden zones” for sleep. Electroencephalogr Clin Neurophysiol 1986; 63: 414–25
  • Lavie P. The 24-hour sleep propensity function (SPF): practical and theoretical implications. Sleep, sleepiness and performance, T H Monk. John Wiley and Sons, ChichesterEngland 1991; 65–93
  • Lavie P, Segal S. Twenty-four-hour structure of sleepiness in morning and evening persons investigated by ultrashort sleep-wake cycle. Sleep 1989; 12(6)522–28
  • Mackworth N H. The breakdown of vigilance during prolonged visual search. Q J Exp Psychol 1948; 1: 6–21
  • May C P, Hasher L. Synchrony effects in inhibition control over thoughts and actions. J Exp Psychol Hum Percept Perform 1998; 24: 363–79
  • Mitler M M, Hajdukovic R M, Hahn P M, et al. Circadian rhythm of death time: cause of death versus recorded death time in New York City [abstract]. Sleep Res. 1985; 4: 306
  • Monk T H. The interaction between the edge effect and target conspicuity in visual search. Hum Factors 1981; 23: 615–25
  • Monk T H, Buysse D J, Reynolds C F, et al. Circadian determinants of the post-lunch dip in performance. Chronobiol Int. 1996; 13: 135–45
  • Monk T H, Buysse D J, Reynolds C F, et al. Circadian rhythms in human performance and mood under constant conditions. J Sleep Res. 1997; 6: 9–18
  • Monk T H, Carrier J. Speed of mental processing in the middle of the night. Sleep 1997; 20: 399–401
  • Monk T H, Carrier J. A parallelism between human body temperature and performance independent of the endogenous circadian pacemaker. J Biol Rhythms 1998; 13: 113–22
  • Monk T H, Leng V C. Interactions between inter-individual and inter-risk differences in the diurnal variation of human performance. Chronobiol Int. 1986; 3: 171–77
  • Monk T H, Moline M L, Fookson J E, et al. Circadian determinants of subjective alertness. J Biol Rhythms 1989; 4: 393–404
  • Monk T H, Weitzman E D, Fookson J E, et al. Task variables determine which biological clock controls circadian rhythms in human performance. Nature 1983; 304: 543–45
  • Muscio B. Fluctuations in mental efficiency. Br J Psychol 1920; 10: 327–44
  • Owens D S, MacDonald I, Tucker P, et al. Diurnal trends in mood and performance do not parallel alertness. Scand J Work Environ Health 1998; 24: 109–14
  • Prokop O, Prokop L. Ermunudung und Einschlafen am Steuer. Zentralbl Verkehrs-Medizin, Verkehrs-Psychologie angrenzende Gebiete 1955; 1: 19–30
  • Richardson G S, Carskadon M A, Orav E J, et al. Circadian variation of sleep tendency in elderly and young adult subjects. Sleep 1982; 5: S82–S94
  • Rutenfranz J, Helbruegge T. Über Tageschwankungen der Rechengeschwindigkeit bei 11-jährigen Kindern. Z Kinderheilk 1957; 80: 65–82
  • Shub Y, Ashkenazi I E, Reinberg A. Differences between left- and right-hand reaction time rhythms: indications of shifts in strategies of human brain activity. Cogn Brain Res. 1997; 6: 141–46
  • Wever R A. The circadian system of man: results of experiments under temporal isolation. Springer-Verlag, New York 1979
  • Wyatt J K, Ritz-DeCecco A, Czeisler C A, et al. Circadian temperature and melatonin rhythms, sleep, and neurobehavioral function in humans living on a 20-h day. Am J Physiol: Regulative, Integrative Comp Physiol 1999; 277: R1152–63
  • Zaidel E. Disconnection syndrome as a model for laterality effects in the normal brain. Cerebral hemisphere asymmetry, J B Hellige. Praeger, New York 1983; 95–151

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