Sleep is homeostatically regulated in all animal species that have been carefully studied so far. The best characterized marker of sleep homeostasis is slow wave activity (SWA), the EEG power between 0.5 and 4 Hz during nonrapid eye movement (NREM) sleep. SWA reflects the accumulation of sleep pressure as a function of duration and/or intensity of prior wake: it increases after spontaneous wake and short-term (3-24 h) sleep deprivation and decreases during sleep. However, recent evidence suggests that during chronic sleep restriction (SR) sleep may be regulated by both allostatic and homeostatic mechanisms. Here, we performed continuous, almost completely artifact-free EEG recordings from frontal, parietal, and occipital cortex in freely mo...
Sleep-wake history, wake behaviours, lighting conditions and circadian time influence sleep, but nei...
Sleep-wake history, wake behaviours, lighting conditions and circadian time influence sleep, but nei...
According to the homeostatic regulation of sleep, sleep pressure accumulates during wakefulness, fur...
Sleep is homeostatically regulated in all animal species that have been carefully studied so far. Th...
Sleep is homeostatically regulated in all animal species that have been carefully studied so far. Th...
Study Objective: Sleep is regulated by homeostatic and circadian processes. Slow wave activity (SWA;...
The electrical activity of the brain does not only reflect the current level of arousal, ongoing beh...
Sleep is regulated by the interaction of a homeostatic (Process S) and a circadian component. The du...
Sleep is regulated by a homeostatic process which in the two-process model of human sleep regulation...
Sleep is regulated by a homeostatic process which in the two-process model of human sleep regulation...
Numerous studies have evaluated the sleep homeostasis of rats after short- or long-periods of sleep ...
STUDY OBJECTIVE: Sleep slow-wave activity (SWA, EEG power between 0.5 and 4.0 Hz) decreases homeosta...
Similar to the nap-protocols applied in humans, the repeated short-sleep deprivation protocol in rat...
Cortical activity during sleep and waking is traditionally investigated with electroencephalography ...
Introduction: Under constant sleep pressure, which can be achieved by repeated short-sleep deprivat...
Sleep-wake history, wake behaviours, lighting conditions and circadian time influence sleep, but nei...
Sleep-wake history, wake behaviours, lighting conditions and circadian time influence sleep, but nei...
According to the homeostatic regulation of sleep, sleep pressure accumulates during wakefulness, fur...
Sleep is homeostatically regulated in all animal species that have been carefully studied so far. Th...
Sleep is homeostatically regulated in all animal species that have been carefully studied so far. Th...
Study Objective: Sleep is regulated by homeostatic and circadian processes. Slow wave activity (SWA;...
The electrical activity of the brain does not only reflect the current level of arousal, ongoing beh...
Sleep is regulated by the interaction of a homeostatic (Process S) and a circadian component. The du...
Sleep is regulated by a homeostatic process which in the two-process model of human sleep regulation...
Sleep is regulated by a homeostatic process which in the two-process model of human sleep regulation...
Numerous studies have evaluated the sleep homeostasis of rats after short- or long-periods of sleep ...
STUDY OBJECTIVE: Sleep slow-wave activity (SWA, EEG power between 0.5 and 4.0 Hz) decreases homeosta...
Similar to the nap-protocols applied in humans, the repeated short-sleep deprivation protocol in rat...
Cortical activity during sleep and waking is traditionally investigated with electroencephalography ...
Introduction: Under constant sleep pressure, which can be achieved by repeated short-sleep deprivat...
Sleep-wake history, wake behaviours, lighting conditions and circadian time influence sleep, but nei...
Sleep-wake history, wake behaviours, lighting conditions and circadian time influence sleep, but nei...
According to the homeostatic regulation of sleep, sleep pressure accumulates during wakefulness, fur...