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Biomedical subjects

P Naitoh

Publications and source records attributed to P Naitoh.

12 recordsLinked to original sources

The effects of flurazepam hydrochloride on brain electrical activity during sleep.

To further evaluate the effects of flurazepam on EEG during sleep, following 7 nights of placebo baseline, flurazepam (30 mg) was administered to 6 young adult poor sleepers for 10 additional nights while 6 other young adult poor sleepers continued to receive placebo capsules in a double-blind paradigm. Three placebo follow-up nights were recorded 2--3 weeks post-treatment. Twelve good sleepers received only placebo capsules for the first 7 nights. Delta waves, 0.5--2 c/sec, and sleep spindles were counted on-line by a phasic detector. Delta activity was also analyzed off-line by PDP-12 computer for only the first 4 h of sleep and involved a comparison over stages of sleep. Click-evoked K-complexes during NREM sleep were analyzed for 6 good sleepers and 11 poor sleepers. Repeated use of flurazepam caused a gradual decrease in delta amplitude and count, and a gradual increase in sleep spindle rate. The decrease in delta amplitude was seen in all sleep stages, but the decrease was significant only during SWS and stage 2. The decrease in delta amplitude was significant by the 3rd drug night, but the rate of amplitude decrease tended to slow with continued treatment. The decrease in delta count was less pronounced and more gradual over drug nights than the rate of decrease in amplitude. Flurazepam also significantly reduced evoked K-complex amplitude but did not affect latency. Sleep spindle rate was significantly increased by drug night 5. Results of this study indicate that the reduction of SWS with flurazepam during the initial drug nights is due primarily to the decrease in delta amplitude, but, with continued use, the decrease in delta count also contributes to the decrease in stage 4 sleep.

Adult

Circadian variation in performance, subjective sleepiness, sleep, and oral temperature during an altered sleep-wake schedule.

The effect of an altered sleep-wake schedule on the interrelation of oral temperature, performance, and sleepiness was studied in 38 male Naval volunteers who maintained a 60 min treatment--160 min testing schedule for 40 consecutive hrs. During the 60 min treatment portion of each epoch, 8 subjected napped, 10 subjects exercised, and 20 subjects rested in bed. Sleep measures (for the nap subjects), oral temperature, performance on several tests, and Stanford Sleepiness Scale ratings were obtained at 10 equidistant intervals throughout the 40-hr period. Within-subject correlations showed that minimum oral temperature was significantly associated with maximum nap sleep time, errors on a vigilance task, and sleepiness ratings. In the nap subjects, errors and sleepiness ratings were highest following naps with high total sleep time, suggesting that sleep was detrimental to immediately subsequent performance and alertness. The distribution and interrelation of temperature, errors, and sleepiness, however, was similar in the three groups; this indicated that the synchronous circadian variation in these measures was responsible for the apparent detrimental effect of sleep in the nap subjects. When the diurnal effect was removed by holding time of day constant, the correlations among the variables fell to near-zero, indicating no causal relationship among the variables independent of the circadian rhythm.

Adolescent

Stabilization of alpha frequency by sinusoidally modulated light.

Two experiments demonstrate that a spontaneous electroencephalographic (EEG) rhythm, alpha, can be frequency-stabilized by sinusoidally modulated light (SML) but not by photic flash stimulation. It is suggested that this frequency stabilizing effect is not due to superimposition of an evoked response on the background EEG. Instead, SML might phase-lock the scalp-recorded alpha rhythm by influencing subcortical alpha generators within narrow limits set by the inherent resonant EEG frequency.

Adolescent

Dynamics of nap sleep during a 40 hour period.

Following 1 baseline night, the sleep of 8 adult males in equally space 1 h naps during a 40 h period was examined. Ten additional subjects were sleep-deprived for 40 h with 1 h periods of exercise given in place of naps. One recovery night followed the 40 h period for both groups. Total sleep time and the amount of stage REM during the naps were negatively related to the circadian-temperature cycle. Stage REM frequently appeared within 10 min of stage 1 onset and the normal sequence of stages REM and 4 were altered, demonstrating that the organization of sleep within a nap is quite different from that in monophasic nocturnal sleep. Auto-correlation and cross-correlation analyses showed that the relation of sleep stages from hour to hour in normal continuous baseline sleep was altered in nap-to-nap comparison. The timing of REM onset may be controlled by a sleep-dependent ultradian clock; the clock may stop upon awakening and resume at the next sleep onset. Naps had recuperative value in terms of maintaining the normal amounts of sleep stages on the recovery night; recovery sleep for the exercise group showed typical sleep-loss effects.

Adult