Sleep Homeostasis and Models of Sleep Regulation
暂无分享,去创建一个
[1] Maria L. Thomas,et al. Neural basis of alertness and cognitive performance impairments during sleepiness. I. Effects of 24 h of sleep deprivation on waking human regional brain activity , 2000, Journal of sleep research.
[2] T. Sejnowski,et al. Why do we sleep? , 2000, Brain research.
[3] P Achermann,et al. Dual electroencephalogram markers of human sleep homeostasis: correlation between theta activity in waking and slow-wave activity in sleep , 2000, Neuroscience.
[4] Maria V. Sanchez-Vives,et al. Cellular and network mechanisms of rhythmic recurrent activity in neocortex , 2000, Nature Neuroscience.
[5] Maquet,et al. Functional neuroimaging of normal human sleep by positron emission tomography , 2000, Journal of sleep research.
[6] J. Horne,et al. The impact of sleep deprivation on decision making: a review. , 2000, Journal of experimental psychology. Applied.
[7] A A Borbély,et al. Functional neuroanatomy of human sleep states after zolpidem and placebo: A H215O‐PET study , 2000, Journal of sleep research.
[8] Reto Huber,et al. Effects of sleep deprivation on sleep and sleep EEG in three mouse strains: empirical data and simulations , 2000, Brain Research.
[9] Alexander A. Borbély,et al. Biomathematical Modeling Workshop, May 18-21, 1999 , 1999 .
[10] Daniel B. Forger,et al. Revised Limit Cycle Oscillator Model of Human Circadian Pacemaker , 1999, Journal of biological rhythms.
[11] T. Åkerstedt,et al. Beyond the Three-Process Model of Alertness: Estimating Phase, Time on Shift, and Successive Night Effects , 1999, Journal of biological rhythms.
[12] R. Kronauer,et al. Reply to Technical Note: Nonlinear Interactions between Circadian and Homeostatic Processes: Models or Metrics? , 1999, Journal of biological rhythms.
[13] P Achermann,et al. Modeling Circadian Rhythm Generation in the Suprachiasmatic Nucleus with Locally Coupled Self-Sustained Oscillators: Phase Shifts and Phase Response Curves , 1999, Journal of biological rhythms.
[14] P. Achermann. Technical Note: A Problem with Identifying Nonlinear Interactions of Circadian and Homeostatic Processes , 1999, Journal of biological rhythms.
[15] R. Kronauer,et al. Interactive Mathematical Models of Subjective Alertness and Cognitive Throughput in Humans , 1999, Journal of biological rhythms.
[16] Peter Achermann,et al. Frequency and state specific hemispheric asymmetries in the human sleep EEG , 1999, Neuroscience Letters.
[17] R. Kronauer,et al. Stability, precision, and near-24-hour period of the human circadian pacemaker. , 1999, Science.
[18] P. Achermann,et al. Regional differences in the dynamics of the cortical EEG in the rat after sleep deprivation , 1999, Clinical Neurophysiology.
[19] P. Achermann,et al. Alpha activity in the human REM sleep EEG: topography and effect of REM sleep deprivation , 1999, Clinical Neurophysiology.
[20] C A Czeisler,et al. Time course of sleep inertia dissipation in human performance and alertness , 1999, Journal of sleep research.
[21] J. Carrier,et al. Time course of narrow frequency bands in the waking EEG during sleep deprivation. , 1999, Neuroreport.
[22] D. Dijk,et al. Frontal predominance of a relative increase in sleep delta and theta EEG activity after sleep loss in humans. , 1999, Sleep research online : SRO.
[23] P. Achermann,et al. Coherence analysis of the human sleep electroencephalogram , 1998, Neuroscience.
[24] R. Kronauer,et al. Refinement of a limit cycle oscillator model of the effects of light on the human circadian pacemaker. , 1998, Journal of theoretical biology.
[25] Peter Achermann,et al. Temporal evolution of coherence and power in the human sleep electroencephalogram , 1998, Journal of sleep research.
[26] M. Nakao,et al. Bifurcation properties of the two process model , 1998, Psychiatry and clinical neurosciences.
[27] Peter Achermann,et al. Selective REM sleep deprivation in humans: effects on sleep and sleep EEG. , 1998, American journal of physiology. Regulatory, integrative and comparative physiology.
[28] C. Pollak,et al. Direct comparison of two widely used activity recorders. , 1998, Sleep.
[29] D. Beersma,et al. Models of human sleep regulation. , 1998, Sleep medicine reviews.
[30] Daniel Aeschbach,et al. Dynamics of the human EEG during prolonged wakefulness: evidence for frequency-specific circadian and homeostatic influences , 1997, Neuroscience Letters.
[31] C A Czeisler,et al. Variation of electroencephalographic activity during non‐rapid eye movement and rapid eye movement sleep with phase of circadian melatonin rhythm in humans , 1997, The Journal of physiology.
[32] Florin Amzica,et al. The K-complex: Its slow (<1-Hz) rhythmicity and relation to delta waves , 1997, Neurology.
[33] M. Nakao,et al. An Interpretation of the Internal Desynchronizations Based on Dynamics of the Two-process Model , 1997, Methods of Information in Medicine.
[34] P. Achermann,et al. Low-frequency (<1Hz) oscillations in the human sleep electroencephalogram , 1997, Neuroscience.
[35] S. Kastner,et al. Evidence for asynchronous development of sleep in cortical areas , 1997, Neuroreport.
[36] A. Braun,et al. Regional cerebral blood flow throughout the sleep-wake cycle. An H2(15)O PET study. , 1997, Brain : a journal of neurology.
[37] P. Achermann,et al. Fronto‐occipital EEG power gradients in human sleep , 1997, Journal of sleep research.
[38] R. McCarley,et al. Adenosine: a mediator of the sleep-inducing effects of prolonged wakefulness. , 1997, Science.
[39] H. Merica,et al. Relationship between the time courses of power in the frequency bands of human sleep EEG , 1997, Neurophysiologie Clinique/Clinical Neurophysiology.
[40] T. Åkerstedt,et al. The three-process model of alertness and its extension to performance, sleep latency, and sleep length. , 1997, Chronobiology international.
[41] Daniel Aeschbach,et al. Dynamics of EEG spindle frequency activity during extended sleep in humans: relationship to slow-wave activity and time of day , 1997, Brain Research.
[42] Alexander A. Borbély,et al. Selective and total sleep deprivation: effect on the sleep EEG in the rat , 1997, Psychiatry Research.
[43] S Folkard,et al. Complex interaction of the sleep-wake cycle and circadian phase modulates mood in healthy subjects. , 1997, Archives of general psychiatry.
[44] A. Braun,et al. Regional cerebral blood flow throughout the sleep- wake cycle , 1997 .
[45] D. McCormick,et al. Sleep and arousal: thalamocortical mechanisms. , 1997, Annual review of neuroscience.
[46] A A Borbély,et al. Brain topography of the human sleep EEG: antero‐posterior shifts of spectral power , 1996, Neuroreport.
[47] P. Achermann,et al. Effect of age on the sleep EEG: slow-wave activity and spindle frequency activity in young and middle-aged men , 1996, Brain Research.
[48] P. Achermann,et al. Dynamics of the sleep EEG after an early evening nap: experimental data and simulations. , 1996, The American journal of physiology.
[49] D. McCormick,et al. What Stops Synchronized Thalamocortical Oscillations? , 1996, Neuron.
[50] T. Åkerstedt,et al. Predicting sleep latency from the three-process model of alertness regulation. , 1996, Psychophysiology.
[51] T. Åkerstedt,et al. Predicting duration of sleep from the three process model of regulation of alertness. , 1996, Occupational and environmental medicine.
[52] A A Borbély,et al. Homeostatic sleep regulation in habitual short sleepers and long sleepers. , 1996, The American journal of physiology.
[53] R. Kronauer,et al. Simulations of light effects on the human circadian pacemaker: implications for assessment of intrinsic period. , 1996, The American journal of physiology.
[54] P. Achermann,et al. Simulations of circadian system and vigilance during space missions. , 1996, Advances in space biology and medicine.
[55] A A Borbely,et al. Time course of sleep inertia after nighttime and daytime sleep episodes. , 1995, Archives italiennes de biologie.
[56] A. Wirz-Justice,et al. Power density in theta/alpha frequencies of the waking EEG progressively increases during sustained wakefulness. , 1995, Sleep.
[57] B. Evans,et al. Demonstration pf a 3–5s periodicity between the spindle bursts in NREM sleep in man , 1995 .
[58] Derk-Jan Dijk,et al. EEG slow waves and sleep spindles: windows on the sleeping brain , 1995, Behavioural Brain Research.
[59] D.G.M. Dijk,et al. Contribution of the circadian pacemaker and the sleep homeostat to sleep propensity, sleep structure, electroencephalographic slow waves, and sleep spindle activity in humans , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[60] H. Craig Heller,et al. Restoration of brain energy metabolism as the function of sleep , 1995, Progress in Neurobiology.
[61] P. Achermann,et al. Changes of sleep EEG slow‐wave activity in response to sleep manipulations: to what extent are they related to changes in REM sleep latency? , 1995, Journal of sleep research.
[62] Arcady A. Putilov. Timing of sleep modelling: Circadian modulation of the homeostatic process , 1995 .
[63] M Yamamoto,et al. Dynamical features of thermoregulatory model of sleep control. , 1995, The Japanese journal of physiology.
[64] R. Szymusiak,et al. A thermoregulatory model of sleep control. , 1995, The Japanese journal of physiology.
[65] T. Åkerstedt,et al. Validation of the S and C components of the three-process model of alertness regulation. , 1995, Sleep.
[66] D. Contreras,et al. Synchronized sleep oscillations and their paroxysmal developments , 1994, Trends in Neurosciences.
[67] A. Davies,et al. Intrinsic programmes of growth and survival in developing vertebrate neurons , 1994, Trends in Neurosciences.
[68] Takuya Kojima,et al. Dynamic relationships between sleep spindles and delta waves during a NREM period , 1994, Brain Research Bulletin.
[69] H. Heller,et al. Does the function of REM sleep concern non-REM sleep or waking? , 1994, Progress in Neurobiology.
[70] Daniel Aeschbach,et al. Dynamics of Slow-Wave Activity and Spindle Frequency Activity in the Human Sleep EEG: Effect of Midazolam and Zopiclone , 1994, Neuropsychopharmacology.
[71] D. Dijk,et al. Effect of unilateral somatosensory stimulation prior to sleep on the sleep EEG in humans , 1994, Journal of sleep research.
[72] G. Barbato,et al. Extended sleep in humans in 14 hour nights (LD 10:14): relationship between REM density and spontaneous awakening. , 1994, Electroencephalography and clinical neurophysiology.
[73] Derk-Jan Dijk,et al. Paradoxical timing of the circadian rhythm of sleep propensity serves to consolidate sleep and wakefulness in humans , 1994, Neuroscience Letters.
[74] Peter Achermann,et al. A model of human sleep homeostasis based on EEG slow-wave activity: Quantitative comparison of data and simulations , 1993, Brain Research Bulletin.
[75] T. Sejnowski,et al. Thalamocortical oscillations in the sleeping and aroused brain. , 1993, Science.
[76] D. Dijk,et al. Dynamics of electroencephalographic sleep spindles and slow wave activity in men: effect of sleep deprivation , 1993, Brain Research.
[77] J. Krueger,et al. A neuronal group theory of sleep function , 1993, Journal of sleep research.
[78] A. Borbély,et al. All‐night dynamics of the human sleep EEG , 1993, Journal of sleep research.
[79] J. Horne. Human Sleep, Sleep Loss and Behaviour , 1993, British Journal of Psychiatry.
[80] DM Edgar,et al. Effect of SCN lesions on sleep in squirrel monkeys: evidence for opponent processes in sleep-wake regulation , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[81] A A Borbély,et al. Repeated partial sleep deprivation progressively changes in EEG during sleep and wakefulness. , 1993, Sleep.
[82] A. Borbély,et al. Sleep and Waking Have a Major Effect on the 24-Hr Rhythm of Cortical Temperature in the Rat , 1992, Journal of biological rhythms.
[83] I. Feinberg,et al. Precise conservation of NREM period 1 (NREMP1) delta across naps and nocturnal sleep: implications for REM latency and NREM/REM alternation. , 1992, Sleep.
[84] P. Achermann,et al. Combining different models of sleep regulation , 1992, Journal of sleep research.
[85] A. Borbély,et al. Models of sleep regulation in mammals , 1992, Journal of sleep research.
[86] P. Achermann,et al. Concepts and models of sleep regulation: an overview , 1992, Journal of sleep research.
[87] D. Dijk,et al. Circadian and sleep/wake dependent aspects of subjective alertness and cognitive performance , 1992, Journal of sleep research.
[88] R. McCarley,et al. Extension of the Limit Cycle Reciprocal Interaction Model of REM cycle control. An integrated sleep control model , 1992, Journal of sleep research.
[89] L. Mukhametov,et al. Unihemispheric sleep deprivation in bottlenose dolphins , 1992, Journal of sleep research.
[90] C A Czeisler,et al. Short‐term memory, alertness and performance: a reappraisal of their relationship to body temperature , 1992, Journal of sleep research.
[91] R. Ogilvie,et al. Sleep, arousal, and performance : a tribute to Bob Wilkinson , 1992 .
[92] Alexander A. Borbély,et al. Sleep homeostasis in the rat: Simulation of the time course of EEG slow-wave activity , 1991, Neuroscience Letters.
[93] I. Feinberg,et al. Sigma (12–15 Hz) and Delta (0.3–3 Hz) EEG oscillate reciprocally within NREM sleep , 1991, Brain Research Bulletin.
[94] T. Åkerstedt,et al. Recovery within day-time sleep after slow wave sleep suppression. , 1991, Electroencephalography and clinical neurophysiology.
[95] T. Åkerstedt,et al. The dynamics of the first sleep cycle. , 1991, Sleep.
[96] A A Borbély,et al. Electroencephalogram power density and slow wave sleep as a function of prior waking and circadian phase. , 1990, Sleep.
[97] D. Dijk,et al. REM sleep deprivation during 5 hours leads to an immediate REM sleep rebound and to suppression of non-REM sleep intensity. , 1990, Electroencephalography and clinical neurophysiology.
[98] I Tobler,et al. Effect of partial sleep deprivation on sleep stages and EEG power spectra: evidence for non-REM and REM sleep homeostasis. , 1990, Electroencephalography and clinical neurophysiology.
[99] A A Borbély,et al. Simulation of Human Sleep: Ultradian Dynamics of Electroencephalographic Slow-Wave Activity , 1990, Journal of biological rhythms.
[100] A A Borbély,et al. Time course of EEG power density during long sleep in humans. , 1990, The American journal of physiology.
[101] P. Achermann,et al. Sleep Initiation and Initial Sleep Intensity: Interactions of Homeostatic and Circadian Mechanisms , 1989, Journal of biological rhythms.
[102] T. Åkerstedt,et al. Towards the Prediction of Alertness on Abnormal Sleep/Wake Schedules , 1989 .
[103] M. Kryger,et al. Principles and Practice of Sleep Medicine , 1989 .
[104] S. Daan,et al. Bright morning light advances the human circadian system without affecting NREM sleep homeostasis. , 1989, The American journal of physiology.
[105] Peter Achermann. Schlafregulation des Menschen , 1988 .
[106] Peter Achermann,et al. Schlafregulation des Menschen: Modelle und Computersimulationen , 1988 .
[107] I. Feinberg,et al. Effects of sleep loss on delta (0.3-3 Hz) EEG and eye movement density: new observations and hypotheses. , 1987, Electroencephalography and clinical neurophysiology.
[108] S. Daan,et al. EEG Power Density during Nap Sleep: Reflection of an Hourglass Measuring the Duration of Prior Wakefulness , 1987, Journal of biological rhythms.
[109] L. Mukhametov,et al. Unihemispheric slow-wave sleep in the Amazonian dolphin, Inia geoffrensis , 1987, Neuroscience Letters.
[110] T. Åkerstedt,et al. Sleepiness on the job: continuously measured EEG changes in train drivers. , 1987, Electroencephalography and clinical neurophysiology.
[111] P Achermann,et al. Dynamics of EEG slow wave activity during physiological sleep and after administration of benzodiazepine hypnotics. , 1987, Human neurobiology.
[112] S G Massaquoi,et al. A limit cycle mathematical model of the REM sleep oscillator system. , 1986, The American journal of physiology.
[113] T. Åkerstedt,et al. Sleep duration and the power spectral density of the EEG. , 1986, Electroencephalography and clinical neurophysiology.
[114] M. Moore-Ede,et al. Mathematical Models of the Circadian Sleep-Wake Cycle. , 1984 .
[115] S. Daan,et al. Timing of human sleep: recovery process gated by a circadian pacemaker. , 1984, The American journal of physiology.
[116] L. Mukhametov. Sleep in Marine Mammals , 1984 .
[117] J. Hirsch,et al. Sleep-related variations of membrane potential in the lateral geniculate body relay neurons of the cat , 1983, Brain Research.
[118] Alexander A. Borbély,et al. Sleep Regulation: Circadian Rhythm and Homeostasis , 1982 .
[119] C A Czeisler,et al. Mathematical model of the human circadian system with two interacting oscillators. , 1982, The American journal of physiology.
[120] A. Borbély,et al. Sleep, sleep deprivation and depression. A hypothesis derived from a model of sleep regulation. , 1982, Human neurobiology.
[121] A. Borbély. A two process model of sleep regulation. , 1982, Human neurobiology.
[122] M. Bertini,et al. Independence of REM density from other REM sleep parameters before and after REM deprivation. , 1981, Sleep.
[123] D Lehmann,et al. Sleep deprivation: effect on sleep stages and EEG power density in man. , 1981, Electroencephalography and clinical neurophysiology.
[124] Dietrich Lehmann,et al. Functional states of the brain : their determinants , 1980 .
[125] L. Mukhametov,et al. Interhemispheric asymmetry of the electroencephalographic sleep patterns in dolphins , 1977, Brain Research.
[126] J A Hobson,et al. Neuronal excitability modulation over the sleep cycle: a structural and mathematical model. , 1975, Science.
[127] I. Feinberg,et al. Changes in frequency and amplitude of delta activity during sleep. , 1975, Electroencephalography and clinical neurophysiology.
[128] I Feinberg,et al. Changes in sleep cycle patterns with age. , 1974, Journal of psychiatric research.
[129] A. K. Sinha,et al. Human sleep-electroencephalogram: a damped oscillatory phenomenon. , 1972, Journal of theoretical biology.
[130] H. Agnew,et al. Stage 4 Sleep: Influence of Time Course Variables , 1971, Science.
[131] Harold L. Williams,et al. RESPONSES TO AUDITORY STIMULATION, SLEEP LOSS AND THE EEG STAGES OF SLEEP. , 1964, Electroencephalography and clinical neurophysiology.
[132] W. Dement,et al. Cyclic variations in EEG during sleep and their relation to eye movements, body motility, and dreaming. , 1957, Electroencephalography and clinical neurophysiology.
[133] R. Gerard,et al. BRAIN POTENTIALS DURING SLEEP , 1937 .