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Articles

Circadian variations in self-monitoring, a component of executive functions

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Pages 7-23 | Received 01 Jun 2015, Accepted 20 Jul 2015, Published online: 25 Aug 2015

References

  • Abe M, Herzog ED, Yamazaki S, Straume M, Tei H, Sakaki Y, Menaker M, Block GD. 2002. Circadian rhythms in isolated brain regions. J Neurosci. 22:350–356.
  • Akerstedt T, Peters B, Anund A, Kecklund G. 2005. Impaired alertness and performance driving home from the night shift: a driving simulator study. J Sleep Res. 14:17–20.10.1111/jsr.2005.14.issue-1
  • Blatter K, Opwis K, Munch M, Wirz-Justice A, Cajochen C. 2005. Sleep loss-related decrements in planning performance in healthy elderly depend on task difficulty. J Sleep Res. 14:409–417.10.1111/jsr.2005.14.issue-4
  • Bratzke D, Rolke B, Steinborn MB, Ulrich R. 2009. The effect of 40 h constant wakefulness on task-switching efficiency. J Sleep Res. 18:167–172.10.1111/jsr.2009.18.issue-2
  • Braun AR, Balkin TJ, Wesensten NJ, Carson RE, Varga M, Baldwin P, Selbie S, Belenky G, Herscovitch P. 1997. Regional cerebral blood flow throughout the sleep-wake cycle. An H2(15)O PET study. Brain. 120:1173–1197.10.1093/brain/120.7.1173
  • Buck L. 1977. Circadian rhythms in step-input pursuit tracking. Ergonomics. 20:19–31.10.1080/00140137708931597
  • Cain SW, Silva EJ, Chang AM, Ronda JM, Duffy JF. 2011. One night of sleep deprivation affects reaction time, but not interference or facilitation in a Stroop task. Brain Cogn. 76:37–42.10.1016/j.bandc.2011.03.005
  • Cajochen C, Khalsa SB, Wyatt JK, Czeisler CA, Dijk DJ. 1999. EEG and ocular correlates of circadian melatonin phase and human performance decrements during sleep loss. Am J Physiol. 277:R640–R649.
  • Campbell SS, Murphy PJ, Boothroyd CE. 2001. Long-term time estimation is influenced by circadian phase. Physiol Behav. 72:589–593.10.1016/S0031-9384(01)00414-0
  • Carrier J, Monk TH. 2000. Circadian rhythms of performance: new trends. Chronobiol Int. 17:719–732.10.1081/CBI-100102108
  • Cluydts R, De Valck E, Verstraeten E, Theys P. 2002. Daytime sleepiness and its evaluation. Sleep Med Rev. 6:83–96.10.1053/smrv.2002.0191
  • Colquhoun WP. 1971. Biological rhythms and human performance. New York, NY: Academic Press.
  • Doran SM, Van Dongen HPA, Dinges DF. 2001. Sustained attention performance during sleep deprivation: evidence of state instability. Arch Ital Biol. 139:253–267.
  • Dorrian J, Lamond N, Dawson D. 2000. The ability to self-monitor performance when fatigued. J Sleep Res. 9:137–144.10.1046/j.1365-2869.2000.00195.x
  • Duffy JF, Dijk DJ. 2002. Getting through to circadian oscillators: why use constant routines? J Biol Rhythms. 17:4–13.10.1177/074873002129002294
  • Edwards B, Waterhouse J, Reilly T. 2008. Circadian rhythms and their association with body temperature and time awake when performing a simple task with the dominant and non‐dominant hand. Chronobiol Int. 25:115–132.10.1080/07420520801921614
  • Folkard S, Monk TH. 1980. Circadian rhythms in human memory. Br J Psychol. 71:295–307.10.1111/bjop.1980.71.issue-2
  • Folkard S, Tucker P. 2003. Shift work, safety and productivity. Occup Med. 53:95–101.10.1093/occmed/kqg047
  • Fuster JM. 1997. The prefrontal cortex. Philadelphia, PA: Lippincott-Raven.
  • García A, Ramírez C, Martínez B, Valdez P. 2012. Circadian rhythms in two components of executive functions: cognitive inhibition and flexibility. Biol Rhythm Res. 43:49–63.10.1080/09291016.2011.638137
  • Godefroy O. 2003. Frontal syndrome and disorders of executive functions. J Neurol. 250:1–6.10.1007/s00415-003-0918-2
  • Goh VH, Tong TY, Lim CL, Low EC, Lee LK. 2001. Effects of one night of sleep deprivation on hormone profiles and performance efficiency. Mil Med. 166:427–431.
  • Groeger JA, Viola AU, Lo JC, von Schantz M, Archer SN, Dijk DJ. 2008. Early morning executive functioning during sleep deprivation is compromised by a PERIOD3 polymorphism. Sleep. 31:1159–1167.
  • Harrison Y, Jones K, Waterhouse J. 2007. The influence of time awake and circadian rhythm upon performance on a frontal lobe task. Neuropsychologia. 45:1966–1972.10.1016/j.neuropsychologia.2006.12.012
  • Hastings MH, Reddy AB, Maywood ES. 2003. A clockwork web: circadian timing in brain and periphery, in health and disease. Nat Rev Neurosci. 4:649–661.10.1038/nrn1177
  • Heilman KM, Valenstein E. 2003. Clinical neuropsychology. New York, NY: Oxford University Press.
  • Horne JA, Östberg O. 1976. A self-assessment questionnaire to determine morningness–eveningness in human circadian rhythms. Int J Chronobiol. 4:97–110.
  • Jasper I, Häußler A, Marquardt C, Hermsdörfer J. 2009. Circadian rhythm in handwriting. J Sleep Res. 18:264–271.10.1111/jsr.2009.18.issue-2
  • Jennings JR, Monk TH, van der Molen MW. 2003. Sleep deprivation influences some but not all processes of supervisory attention. Psychol Sci. 14:473–486.10.1111/1467-9280.02456
  • Johnson MP, Duffy JF, Dijk DJ, Ronda JM, Dyal CM, Czeisler CA. 1992. Short-term memory, alertness and performance: a reappraisal of their relationship to body temperature. J Sleep Res. 1:24–29.
  • Kleitman N. 1963. Sleep and wakefulness. Chicago, IL: University of Chicago Press.
  • Kleitman N, Jackson DP. 1950. Body temperature and performance under different routines. J Appl Physiol. 3:309–328.
  • Knight RT, Stuss DT. 2002. Prefrontal cortex: the present and the future. In: Stuss DT and Knight RT, editors. Principles of frontal lobe function. New York, NY: Oxford University Press; p. 573–598.10.1093/acprof:oso/9780195134971.001.0001
  • Krigolson OE, Holroyd CB. 2006. Evidence for hierarchical error processing in the human brain. Neuroscience. 137:13–17.10.1016/j.neuroscience.2005.10.064
  • Kuriyama K, Uchiyama M, Suzuki H, Tagaya H, Ozaki A, Aritake S, Kamei Y, Nishikawa T, Takahashi K. 2003. Circadian fluctuation of time perception in healthy human subjects. Neurosci Res. 46:23–31.10.1016/S0168-0102(03)00025-7
  • Lack LC, Thorn SJ. 1992. Sleep disorders: their prevalence and behavioral treatment. In: Caddy GR and Byrne DG, editors. Behavioral medicine. International perspectives. Norwood, NJ: Ablex Publishing Corporation; p. 347–395.
  • Lavie P. 1980. The search for cycles in mental performance from Lombard to Kleitman. Chronobiologia. 7:247–256.
  • Lenné MG, Triggs TJ, Redman JR. 1997. Time of day variations in driving performance. Accid Anal Prev. 29:431–437.10.1016/S0001-4575(97)00022-5
  • Lezak MD, Howieson DB, Loring DW. 2004. Neuropsychological assessment. New York, NY: Oxford University Press.
  • Loeb M, Holding DH, Baker MA. 1982. Noise stress and circadian arousal in self-paced computation. Motiv Emot. 6:43–48.10.1007/BF00992136
  • Lotze M, Wittmann M, von Steinbüchel N, Pöppel E, Roenneberg T. 1999. Daily rhythm of temporal resolution in the auditory system. Cortex. 35:89–100.10.1016/S0010-9452(08)70787-1
  • Luria AR. 1986. Las funciones corticales superiores del hombre [Higher cortical functions in man]. Mexico City: Fontamara.
  • Monk TH, Carrier J. 1998. A parallelism between human body temperature and performance independent of the endogenous circadian pacemaker. J Biol Rhythms. 13:113–122.10.1177/074873098128999961
  • Monsell S. 2003. Task switching. Trends Cogn Sci. 7:134–140.10.1016/S1364-6613(03)00028-7
  • Mullaney DJ, Kripke DF, Fleck PA, Johnson LC. 1983. Sleep loss and nap effects on sustained continuous performance. Psychophysiology. 20:643–651.10.1111/psyp.1983.20.issue-6
  • Nigg JT. 2000. On inhibition/disinhibition in developmental psychopathology: views from cognitive and personality psychology and a working inhibition taxonomy. Psychol Bull. 126:220–246.10.1037/0033-2909.126.2.220
  • Petersen SE, Posner MI. 2012. The attention system of the human brain: 20 years after. Annu Rev Neurosci. 35:73–89.10.1146/annurev-neuro-062111-150525
  • Petros TV, Beckwith BE, Anderson M. 1990. Individual differences in the effects of time of day and passage difficulty on prose memory in adults. Br J Psychol. 81:63–72.10.1111/bjop.1990.81.issue-1
  • Pew RW. 1974. Levels of analysis in motor control. Brain Res. 71:393–400.10.1016/0006-8993(74)90983-4
  • Ramírez C, García A, Valdez P. 2012. Identification of circadian rhythms in cognitive inhibition and flexibility using a Stroop task. Sleep Biol Rhythm. 10:136–144.10.1111/sbr.2012.10.issue-2
  • Ramírez C, Talamantes J, García A, Morales M, Valdez P, Menna-Barreto L. 2006. Circadian rhythms in phonological and visuospatial storage components of working memory. Biol Rhythm Res. 37:433–441.10.1080/09291010600870404
  • Ridderinkhof KR, van den Wildenberg WP, Segalowitz SJ, Carter CS. 2004. Neurocognitive mechanisms of cognitive control: the role of prefrontal cortex in action selection, response inhibition, performance monitoring, and reward-based learning. Brain Cogn. 56:129–140.10.1016/j.bandc.2004.09.016
  • Sarter M, Givens B, Bruno JP. 2001. The cognitive neuroscience of sustained attention: where top-down meets bottom-up. Brain Res Rev. 35:146–160.10.1016/S0165-0173(01)00044-3
  • Schmidt C, Collette F, Cajochen C, Peigneux P. 2007. A time to think: circadian rhythms in human cognition. Cogn Neuropsychol. 24:755–789.10.1080/02643290701754158
  • Stuss DT. 2011. Functions of the frontal lobes: relation to executive functions. J Int Neuropsychol Soc. 17:759–765.10.1017/S1355617711000695
  • Stuss DT, Knight RT. 2002. Principles of frontal lobe function. New York, NY: Oxford University Press.10.1093/acprof:oso/9780195134971.001.0001
  • Valdez P, Ramírez C, García A. 1996. Delaying and extending sleep during weekends: sleep recovery or circadian effect? Chronobiol Int. 13:191–198.10.3109/07420529609012652
  • Valdez P, Ramírez C, García A. 2012. Circadian rhythms in cognitive performance: implications for neuropsychological assessment. Chrono Physiol Ther. 2:81–92.10.2147/CPT
  • Valdez P, Ramírez C, García A. 2014. Circadian rhythms in cognitive processes: implications for school learning. Mind Brain Educ. 8:161–168.10.1111/mbe.2014.8.issue-4
  • Valdez P, Ramírez C, García A, Talamantes J, Armijo P, Borrani J. 2005. Circadian rhythms in components of attention. Biol Rhythm Res. 36:57–65.10.1080/09291010400028633
  • Valdez P, Ramírez C, García A, Talamantes J, Cortez J. 2010. Circadian and homeostatic variation in sustained attention. Chronobiol Int. 27:393–416.10.3109/07420521003765861
  • Valdez P, Ramírez C, Téllez A. 1998. Alteraciones del ciclo dormir-vigilia [Sleep-wake cycle disorders]. In: Téllez A, editor. Trastornos del sueño diagnóstico y Tratamiento [Sleep disorders: diagnosis and treatment]. Mexico: Trillas; p. 193–230.
  • Valdez P, Reilly T, Waterhouse J. 2008. Rhythms of mental performance. Mind Brain Educ. 2:7–16.10.1111/mbe.2008.2.issue-1
  • van Eekelen AP, Kerkhof G. 2003. No interference of task complexity with circadian rhythmicity in a constant routine protocol. Ergonomics. 46:1578–1593.10.1080/0014013031000121598
  • Willingham DB. 1998. A neuropsychological theory of motor skill learning. Psychol Rev. 105:558–584.10.1037/0033-295X.105.3.558
  • Wright KP, Hull JT, Czeisler CA. 2002. Relationship between alertness, performance, and body temperature in humans. Am J Physiol Regul Integr Comp Physiol. 283:R1370–R1377.10.1152/ajpregu.00205.2002

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