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1 tes primarily outdoors and often when people are awake.
2 mples from groups and individual animals who were awake.
3 was applied every 3 hours while the subjects were awake.
4 pruritus recorded every hour while patients were awake.
5 magnetic resonance imaging (MRI) while they were awake.
6 s were recorded every 4 hours while patients were awake.
7 f the thermic effect of food and the cost of being awake.
8 S and after 10 h of RS that followed 38 h of being awake.
14 tion during drug delivery in adult mice that are awake and behaving, whether head fixed or freely mov
18 membrane oxygenation (ECMO) in patients who are awake and spontaneously breathing may represent a no
20 s such as starvation require the organism to be awake and active(4), the ability to switch to a memor
21 ptimal times when an organism is intended to be awake and active, but electric lights and abundant fo
26 negative blood-alcohol level and most likely were awake at the time of CO exposure (28 in residences
27 l of these studies tested infants while they were awake, because of the significant and unique method
33 ain intact, given that a sleeping animal can be awoken by intense stimuli (for example, a loud noise
34 to an animated ICU filled with patients who are awake, cognitively engaged, and mobile with family m
42 We monitored these variables while the mice were awake, during periods of rapid eye movement (REM),
44 aph during 18F-FDG uptake, whereas 6 animals were awake in their home cages and scanned after 60 min
49 nfusions were interrupted until the patients were awake, on a daily basis; in the control group, the
50 ntal cortex slices of mice and rats that had been awake or asleep, we found that the frequency and am
55 peaks and the mean peak ratio when patients were awake were the best predictors of faster progressio
56 phase-when mice are normally more likely to be awake-while also increasing sleep bout length and red
57 e orally or nasotracheally while the patient is awake with the aid of a flexible fiberoptic bronchosc