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Sleep slow wave activity (SWA) is thought to reflect sleep need, increasing in proportion to the length of prior wakefulness and decreasing during sleep.
The proposed methodology was verified on real awake data acquired in controlled conditions (44 recordings of total length 26.38 h) during Maintenance of Wakefulness Tests (MWT).
We conclude that arousal from sleep is under ultradian control and regulated in a sex-dependent manner by dietary yeast and that dietary sucrose regulates the length of time that flies sustain periods of wakefulness.
The following parameters described the activity phase of the daily circadian cycle: mean daily activity, mean duration of activity during wakefulness, mean duration of sleep during wakefulness, proportion of wakefulness spent sleeping, number of sleep episodes during wakefulness, and frequency of long naps.
Finally we show that dietary carbohydrate concentration determines the length of time that male and female flies sustain periods of wakefulness but that, on its own, it has no effect on arousal.
Neurochemistry of wakefulness and sleep.
Neural Circuitry of Wakefulness and Sleep.
Neuroanatomical and neurochemical basis of wakefulness and REM sleep systems.
Basal forebrain control of wakefulness and cortical rhythms.
By the next morning, Gordon was heavily sedated and was drifting in and out of wakefulness.
It was an 11-day state of wakefulness, with half-hour naps here and there.
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