Cortical synchronization during NREM sleep, characterized by electroencephalographic slow waves (SW <4 Hz and >75 µV), is strongly related to the number of hours of wakefulness prior to sleep and to the quality of the waking experience. Whether a similar increase in wakefulness length leads to a comparable enhancement in NREM sleep cortical synchronization in young and older subjects is still a matter of debate in the literature. Here we evaluated the impact of 25-hours of wakefulness on SW during a daytime recovery sleep episode in 29 young (27 y ± 5), and 34 middle-aged (51 y ± 5) subjects. We also assessed whether age-related changes in NREM sleep cortical synchronization predicts the ability to maintain sleep during daytime recovery sle...
The effect of age on sleep and the sleep EEG was investigated in middle-aged men (mean age: 62.0 yea...
STUDY OBJECTIVES: The ability to generate slow waves (SW) during non-rapid eye movement (NREM) sleep...
peer reviewedSTUDY OBJECTIVES: The ability to generate slow waves (SW) during non-rapid eye movemen...
Cortical synchronization during NREM sleep, characterized by electroencephalographic slow waves (SW,...
peer reviewedSlow waves (SW; 75 muV) during non-rapid eye movement (NREM) sleep in humans are chara...
The coupled interaction between slow-wave oscillations and sleep spindles during non-rapid-eye-movem...
Brain recovery after prolonged wakefulness is characterized by increased density, amplitude and slop...
Ageing is associated with marked changes in sleep timing, structure and electroencephalographic (EEG...
OBJECTIVE: To assess age-related topographic changes in the sleep electroencephalogram (EEG). METHOD...
Evidence that electroencephalography (EEG) slow-wave activity (SWA) (EEG spectral power in the 1–4.5...
Objective: To assess age-related topographic changes in the sleep electroencephalogram (EEG). Method...
The ageing process is variably associated with cognitive decline. Temporal organization of sleep-wak...
Slow oscillations (< 1 Hz) in the non-rapid eye movement (NREM) sleep electroencephalogram (EEG) res...
Characterization of the complexity of electroencephalogram (EEG) responses has provided important in...
Objective:To investigate whether age-related and experimental reductions in SWS and sleep continuity...
The effect of age on sleep and the sleep EEG was investigated in middle-aged men (mean age: 62.0 yea...
STUDY OBJECTIVES: The ability to generate slow waves (SW) during non-rapid eye movement (NREM) sleep...
peer reviewedSTUDY OBJECTIVES: The ability to generate slow waves (SW) during non-rapid eye movemen...
Cortical synchronization during NREM sleep, characterized by electroencephalographic slow waves (SW,...
peer reviewedSlow waves (SW; 75 muV) during non-rapid eye movement (NREM) sleep in humans are chara...
The coupled interaction between slow-wave oscillations and sleep spindles during non-rapid-eye-movem...
Brain recovery after prolonged wakefulness is characterized by increased density, amplitude and slop...
Ageing is associated with marked changes in sleep timing, structure and electroencephalographic (EEG...
OBJECTIVE: To assess age-related topographic changes in the sleep electroencephalogram (EEG). METHOD...
Evidence that electroencephalography (EEG) slow-wave activity (SWA) (EEG spectral power in the 1–4.5...
Objective: To assess age-related topographic changes in the sleep electroencephalogram (EEG). Method...
The ageing process is variably associated with cognitive decline. Temporal organization of sleep-wak...
Slow oscillations (< 1 Hz) in the non-rapid eye movement (NREM) sleep electroencephalogram (EEG) res...
Characterization of the complexity of electroencephalogram (EEG) responses has provided important in...
Objective:To investigate whether age-related and experimental reductions in SWS and sleep continuity...
The effect of age on sleep and the sleep EEG was investigated in middle-aged men (mean age: 62.0 yea...
STUDY OBJECTIVES: The ability to generate slow waves (SW) during non-rapid eye movement (NREM) sleep...
peer reviewedSTUDY OBJECTIVES: The ability to generate slow waves (SW) during non-rapid eye movemen...