AbstractOur visual system is plastic and adaptive in response to the stimuli and environments we experience. Although visual adaptation and plasticity have been extensively studied while participants are awake, little is known about what happens while they are asleep. It has been documented that sleep structure as measured by sleep stages using polysomnography is altered specifically in the first sleep session due to exposure to a new sleep environment, known as the first-night effect (FNE). However, the impact of the FNE on spontaneous oscillations in the visual system is poorly understood. How does the FNE affect the visual system during sleep? To address this question, the present study examined whether the FNE modifies the strength of s...
Hospitalization, a significant environmental alteration, is hypothesized to produce first night effe...
Background During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neu...
BACKGROUND:During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neural...
AbstractOur visual system is plastic and adaptive in response to the stimuli and environments we exp...
Previous studies have shown that regional slow-wave activity (SWA) during non-rapid eye movement (NR...
Introduction: experimental evidence indicates that regional changes in slow-wave activity (SWA, 0.5-...
During non-rapid eye movement (NREM) sleep, a global decrease in synaptic strength associated with s...
Slow wave activity (SWA, 0.5-4 Hz) represents the predominant EEG oscillatory activity during slow w...
What is the function of sleep in humans? One claim is that sleep consolidates learning. Slow wave ac...
Introduction: Sleep and plasticity are highly interrelated. Plasticity in primary visual cortex (V1)...
The first-night effect in sleep polysomnographic studies is usually considered to last for one night...
The consolidation of memories in a variety of learning processes benefits from post-training sleep, ...
Sleep consists of multiple stages: S1, S2, slow-wave-sleep (SWS), and rapid eye movement (REM). Do t...
Experience-dependent plasticity, the ability of the brain to constantly adapt to an ever-changing en...
In a recent series of experiments, we demonstrated that a visuomotor adaptation task, 12 hours of le...
Hospitalization, a significant environmental alteration, is hypothesized to produce first night effe...
Background During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neu...
BACKGROUND:During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neural...
AbstractOur visual system is plastic and adaptive in response to the stimuli and environments we exp...
Previous studies have shown that regional slow-wave activity (SWA) during non-rapid eye movement (NR...
Introduction: experimental evidence indicates that regional changes in slow-wave activity (SWA, 0.5-...
During non-rapid eye movement (NREM) sleep, a global decrease in synaptic strength associated with s...
Slow wave activity (SWA, 0.5-4 Hz) represents the predominant EEG oscillatory activity during slow w...
What is the function of sleep in humans? One claim is that sleep consolidates learning. Slow wave ac...
Introduction: Sleep and plasticity are highly interrelated. Plasticity in primary visual cortex (V1)...
The first-night effect in sleep polysomnographic studies is usually considered to last for one night...
The consolidation of memories in a variety of learning processes benefits from post-training sleep, ...
Sleep consists of multiple stages: S1, S2, slow-wave-sleep (SWS), and rapid eye movement (REM). Do t...
Experience-dependent plasticity, the ability of the brain to constantly adapt to an ever-changing en...
In a recent series of experiments, we demonstrated that a visuomotor adaptation task, 12 hours of le...
Hospitalization, a significant environmental alteration, is hypothesized to produce first night effe...
Background During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neu...
BACKGROUND:During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neural...