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Unihemispheric slow-wave sleep

Unihemispheric slow-wave sleep is sleep where one half of the brain rests while the other half remains alert. This is in contrast to normal sleep where both eyes are shut and both halves of the brain show unconsciousness. Wikipedia
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Polysomnography studies have conclusively shown that USWS is indeed sleep because one hemisphere has high-amplitude slow wave activity (1.2–4 Hz), while the ...
Unihemispheric slow-wave sleep from en.wikipedia.org
Unihemispheric slow-wave sleep (USWS) is sleep where one half of the brain rests while the other half remains alert. This is in contrast to normal sleep ...
Unihemispheric slow-wave sleep from www.scientificamerican.com
Sep 1, 2016 · Yet birds and aquatic mammals such as dolphins and whales display the remarkable phenomenon of unihemispheric slow-wave sleep: one half of their ...
Unihemispheric slow-wave sleep from www.scientificamerican.com
In EEG recordings, the researchers consistently found that one hemisphere of the animals' brain was in a state of slow-wave sleep, while the other was awake.
Unihemispheric slow-wave sleep from phys.org
Jul 30, 2019 · ... slow-wave sleep, the left hemisphere experiences shallower sleep, suggesting that it may be staying partially alert. Now in a new study ...
May 22, 2019 · Unihemispheric slow wave sleep (USWS) is a unique form of sleep in which one brain hemisphere maintains low voltage electrical activity ...
a mode of sleep behavior, common for certain species of birds and aquatic mammals, in which one cerebral hemisphere is deeply asleep while the other is ...
An electroencephalographic study of sleep in Amazonian dolphins, Inia geoffrensis, revealed that unihemispheric slow-wave sleep is the dominant sleep type ...
Unihemispheric slow-wave sleep from www.sleepandattentiondisorders.com
Jun 12, 2019 · This is unihemispheric slow wave sleep. They do not have any REM sleep (suggesting REM sleep may not be an essential part of mammalian sleep) ...
Polysomnography studies have conclusively shown that USWS is indeed sleep because one hemisphere has high-amplitude slow wave activity (1.2–4 Hz), while the ...