Maximizing sensitivity of the psychomotor vigilance test (PVT) to sleep loss.
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[1] D. Dinges,et al. Neurobehavioral dynamics following chronic sleep restriction: dose-response effects of one night for recovery. , 2010, Sleep.
[2] D. Dinges,et al. A meta-analysis of the impact of short-term sleep deprivation on cognitive variables. , 2010, Psychological bulletin.
[3] John A. Detre,et al. Imaging brain fatigue from sustained mental workload: An ASL perfusion study of the time-on-task effect , 2010, NeuroImage.
[4] M. Chee,et al. Sleep Deprivation Impairs Object-Selective Attention: A View from the Ventral Visual Cortex , 2010, PloS one.
[5] Jack W. Tsao,et al. Molecular and Biophysical Mechanisms of Arousal, Alertness and Attention, Donald W. Pfaff, Brigitte L. Kieffer (Eds.). Wiley-Blackwell Publishing (2008), ISBN-13: 978-1-57331-703-0, 372 pages, $130 , 2009 .
[6] Logan T. Trujillo,et al. An ERP examination of the different effects of sleep deprivation on exogenously cued and endogenously cued attention. , 2009, Sleep.
[7] E. Mignot,et al. PER3 Polymorphism Predicts Cumulative Sleep Homeostatic but Not Neurobehavioral Changes to Chronic Partial Sleep Deprivation , 2009, PloS one.
[8] T. Balkin,et al. Banking sleep: realization of benefits during subsequent sleep restriction and recovery. , 2009, Sleep.
[9] William D S Killgore,et al. Executive functions and the ability to sustain vigilance during sleep loss. , 2009, Aviation, space, and environmental medicine.
[10] T. Balkin,et al. Paying Down the Sleep Debt: Realization of Benefits During Subsequent Sleep Restriction and Recovery , 2008 .
[11] Hans P A Van Dongen,et al. Response Surface Mapping of Neurobehavioral Performance: Testing the Feasibility of Split Sleep Schedules for Space Operations. , 2008, Acta astronautica.
[12] Joel S. Warm,et al. Vigilance Requires Hard Mental Work and Is Stressful , 2008, Hum. Factors.
[13] M. Chee,et al. Lapsing during Sleep Deprivation Is Associated with Distributed Changes in Brain Activation , 2008, The Journal of Neuroscience.
[14] D. Dinges,et al. Sleep Deprivation and Vigilant Attention , 2008, Annals of the New York Academy of Sciences.
[15] M. Posner. Measuring Alertness , 2008, Annals of the New York Academy of Sciences.
[16] J. Dorrian,et al. The sensitivity of a palm-based psychomotor vigilance task to severe sleep loss , 2008, Behavior research methods.
[17] D. Dinges,et al. Behavioral and physiological consequences of sleep restriction. , 2007, Journal of clinical sleep medicine : JCSM : official publication of the American Academy of Sleep Medicine.
[18] T. Åkerstedt,et al. Transport and industrial safety, how are they affected by sleepiness and sleep restriction? , 2006, Sleep medicine reviews.
[19] C. Anderson,et al. Sleepiness enhances distraction during a monotonous task. , 2006, Sleep.
[20] D. Dawson,et al. Can a Shorter Psychomotor Vigilance Task Be Usedas a Reasonable Substitute for the Ten‐Minute Psychomotor Vigilance Task? , 2006, Chronobiology international.
[21] M. J. Meloy,et al. The neural basis of the psychomotor vigilance task. , 2005, Sleep.
[22] D. Dinges,et al. Modafinil for excessive sleepiness associated with shift-work sleep disorder. , 2005, The New England journal of medicine.
[23] Kathryn A. Lee. Sleep Deprivation: Clinical Issues, Pharmacology, and Sleep Loss Effects , 2005 .
[24] Drew Dawson,et al. Fatigue assessment in the field: validation of a hand-held electronic psychomotor vigilance task. , 2005, Aviation, space, and environmental medicine.
[25] D. Dinges,et al. Sleep, circadian rhythms, and psychomotor vigilance. , 2005, Clinics in sports medicine.
[26] D. Dinges,et al. Individual differences in adult human sleep and wakefulness: Leitmotif for a research agenda. , 2005, Sleep.
[27] D. Dinges,et al. Neurocognitive consequences of sleep deprivation. , 2005, Seminars in neurology.
[28] Gregory Belenky,et al. The Walter Reed palm-held psychomotor vigilance test , 2005, Behavior research methods.
[29] D. Dinges,et al. Psychomotor Vigilance Performance: Neurocognitive Assay Sensitive to Sleep Loss , 2004 .
[30] Maria L. Thomas,et al. Comparative utility of instruments for monitoring sleepiness‐related performance decrements in the operational environment , 2004, Journal of sleep research.
[31] D. Dinges,et al. Systematic interindividual differences in neurobehavioral impairment from sleep loss: evidence of trait-like differential vulnerability. , 2004, Sleep.
[32] J. Dorrian,et al. The validity of psychomotor vigilance tasks of less than 10-minute duration , 2004, Behavior research methods, instruments, & computers : a journal of the Psychonomic Society, Inc.
[33] A. Wirz-Justice,et al. Circadian and wake-dependent modulation of fastest and slowest reaction times during the psychomotor vigilance task , 2004, Physiology & Behavior.
[34] D. Dinges,et al. The cumulative cost of additional wakefulness: dose-response effects on neurobehavioral functions and sleep physiology from chronic sleep restriction and total sleep deprivation. , 2003, Sleep.
[35] Maria L. Thomas,et al. Patterns of performance degradation and restoration during sleep restriction and subsequent recovery: a sleep dose‐response study , 2003, Journal of sleep research.
[36] Laura M. Colletti,et al. Controlled breaks as a fatigue countermeasure on the flight deck. , 2002, Aviation, space, and environmental medicine.
[37] D. Dinges,et al. Caffeine eliminates psychomotor vigilance deficits from sleep inertia. , 2001, Sleep.
[38] S. Doran,et al. Sustained attention performance during sleep deprivation: evidence of state instability. , 2001, Archives italiennes de biologie.
[39] R. Kronauer,et al. Dose-response relationship between sleep duration and human psychomotor vigilance and subjective alertness. , 1999, Sleep.
[40] A. Pack,et al. Cumulative sleepiness, mood disturbance, and psychomotor vigilance performance decrements during a week of sleep restricted to 4-5 hours per night. , 1997, Sleep.
[41] D. Dinges. An overview of sleepiness and accidents , 1995, Journal of sleep research.
[42] A. Pack,et al. Effects of one night without nasal CPAP treatment on sleep and sleepiness in patients with obstructive sleep apnea. , 1993, The American review of respiratory disease.
[43] M. Orne,et al. Temporal placement of a nap for alertness: contributions of circadian phase and prior wakefulness. , 1987, Sleep.
[44] David F. Dinges,et al. Microcomputer analyses of performance on a portable, simple visual RT task during sustained operations , 1985 .
[45] M. Loeb,et al. The Psychology of Vigilance , 1982 .
[46] G. Patrick,et al. Studies from the psychological laboratory of the University of Iowa: On the effects of loss of sleep , 1896 .
[47] W.. Inertia , 1884, Science.
[48] Monicque Lorist,et al. Cognitive fatigue. Multidisciplinary perspectives on current research and future applications , 2011 .
[49] K. Gluck,et al. Fatigue in Sustained Attention: Generalizing Mechanisms for Time Awake to Time on Task , 2010 .
[50] P. Whitney,et al. Effects of sleep deprivation on dissociated components of executive functioning. , 2010, Sleep.
[51] N. Volkow,et al. Impairment of attentional networks after 1 night of sleep deprivation. , 2009, Cerebral cortex.
[52] K. Gluck,et al. Individual Differences in Sustained Vigilant Attention: Insights from Computational Cognitive Modeling , 2008 .
[53] M. Kenward,et al. An Introduction to the Bootstrap , 2007 .
[54] A. Chiba,et al. Sleep deprivation in rats produces attentional impairments on a 5-choice serial reaction time task. , 2006, Sleep.
[55] D. Dijk,et al. Circadian temperature and melatonin rhythms , sleep , and neurobehavioral function in humans living on a 20h day , 1999 .
[56] Melissa M. Mallis,et al. MANAGING FATIGUE BY DROWSINESS DETECTION: CAN TECHNOLOGICAL PROMISES BE REALIZED? , 1998 .
[57] D. Dinges,et al. Performing while sleepy: Effects of experimentally-induced sleepiness. , 1991 .