Simulation of daytime vigilance by the additive interaction of a homeostatic and a circadian process.
about
Classifying vulnerability to sleep deprivation using baseline measures of psychomotor vigilanceNeurobehavioral dynamics following chronic sleep restriction: dose-response effects of one night for recoveryCircadian rhythms, sleep deprivation, and human performanceA physiologically based model of orexinergic stabilization of sleep and wakeCircadian and wake-dependent influences on subjective sleepiness, cognitive throughput, and reaction time performance in older and young adults.What is the best measure of daytime sleepiness in adults with heart failure?Validating and extending the three process model of alertness in airline operations.A mathematical model towards understanding the mechanism of neuronal regulation of wake-NREMS-REMS statesTime course of sleep inertia dissipation in human performance and alertness.Excessive daytime sleepiness is associated with poor medication adherence in adults with heart failureResponse Surface Mapping of Neurobehavioral Performance: Testing the Feasibility of Split Sleep Schedules for Space Operations.Systematic individual differences in sleep homeostatic and circadian rhythm contributions to neurobehavioral impairment during sleep deprivation.Optimization of biomathematical model predictions for cognitive performance impairment in individuals: accounting for unknown traits and uncertain states in homeostatic and circadian processesGenetics of Sleep Timing, Duration and Homeostasis in HumansModeling napping, post-lunch dip, and other variations in human sleep propensity.A new mathematical model for the homeostatic effects of sleep loss on neurobehavioral performanceDynamic circadian modulation in a biomathematical model for the effects of sleep and sleep loss on waking neurobehavioral performance.The ontogeny of sleep-wake cycles in zebrafish: a comparison to humans.An improved methodology for individualized performance prediction of sleep-deprived individuals with the two-process model.Sleep inertia, sleep homeostatic and circadian influences on higher-order cognitive functionsDeconstructing and reconstructing cognitive performance in sleep deprivation.Imaging homeostatic sleep pressure and circadian rhythm in the human brain.Modeling sleep propensity when sleep is severely restricted.Clock genes and sleep homeostasis: a fundamental link within the two-process model?Investigating the interaction between the homeostatic and circadian processes of sleep-wake regulation for the prediction of waking neurobehavioural performance.Diurnal spectral EEG fluctuations in narcoleptic patients during rest and reaction time tasks.
P2860
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P2860
Simulation of daytime vigilance by the additive interaction of a homeostatic and a circadian process.
description
1994 nî lūn-bûn
@nan
1994年の論文
@ja
1994年学术文章
@wuu
1994年学术文章
@zh
1994年学术文章
@zh-cn
1994年学术文章
@zh-hans
1994年学术文章
@zh-my
1994年学术文章
@zh-sg
1994年學術文章
@yue
1994年學術文章
@zh-hant
name
Simulation of daytime vigilanc ...... tatic and a circadian process.
@en
Simulation of daytime vigilanc ...... tatic and a circadian process.
@nl
type
label
Simulation of daytime vigilanc ...... tatic and a circadian process.
@en
Simulation of daytime vigilanc ...... tatic and a circadian process.
@nl
prefLabel
Simulation of daytime vigilanc ...... tatic and a circadian process.
@en
Simulation of daytime vigilanc ...... tatic and a circadian process.
@nl
P356
P1476
Simulation of daytime vigilanc ...... tatic and a circadian process.
@en
P2093
A A Borbély
P Achermann
P304
P356
10.1007/S004220050073
P577
1994-01-01T00:00:00Z