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1                                Specifically, drowsy animals with significant power in the 7- to 9-Hz
2 st (90%) therapeutic procedures employed the drowsy/arousable level of sedation.
3  employed by anesthesiologists: awake/alert, drowsy/arousable, asleep/arousable, deep sedation, and g
4 989 six-minute segments (54 percent) showing drowsy drivers involved just eight drivers.
5  daytime sleepiness, increasing the risk for drowsy driving two to three times.
6  on sleep, the public health implications of drowsy driving, and the common sleep disorders of obstru
7 t apparent, although the volunteers appeared drowsy during the latter part of the study.
8  sciatic nerve with either the hyper (HY) or drowsy (DY) strain of the transmissible mink encephalopa
9 e, inoculation of the sciatic nerve with the drowsy (DY) strain of the transmissible mink encephalopa
10     PrP(Sc) formation for the hyper (HY) and drowsy (DY) strains of the transmissible mink encephalop
11                   The long-incubation-period drowsy (DY) TME strain was the predominate strain, based
12 ns of hamsters infected with the hyper (HY), drowsy (DY), and 263K TSE strains yielded similar SDS-po
13  brain states ranged from alert vigilance to drowsy/inattention, and, in some cases, to light sleep.
14 tes from three hamster prion strains (Hyper, Drowsy, SSLOW) subjected to minimal manipulations.
15 wo parameters correspond well to an awake to drowsy state transition.
16 , in which subjects underwent both awake and drowsy states.
17 is method was employed to classify awake and drowsy states.
18 erminally afflicted with the 263K, 139H, and drowsy strains of hamster-adapted scrapie.
19 ry and neurophysiological links to states of drowsy wakefulness.

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