EEG slow waves, the hallmarks of NREM sleep are thought to be crucial for the regulation of several important processes, including learning, sensory disconnection and the removal of brain metabolic wastes. Animal research indicates that slow waves may involve complex interactions within and between cortical and subcortical structures. Conventional EEG in humans, however, has a low spatial resolution and is unable to accurately describe changes in the activity of subcortical and deep cortical structures. To overcome these limitations, here we took advantage of simultaneous EEG-fMRI recordings to map cortical and subcortical hemodynamic (BOLD) fluctuations time-locked to slow waves of light sleep. Recordings were performed in twenty healthy a...
Slow oscillations (< 1 Hz) in the non-rapid eye movement (NREM) sleep electroencephalogram (EEG) res...
BACKGROUND:During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neural...
Sleep studies often observe differences in slow wave activity (SWA) during non-rapid eye movement sl...
EEG slow waves, the hallmarks of NREM sleep are thought to be crucial for the regulation of several ...
EEG slow waves, the hallmarks of NREM sleep are thought to be crucial for the regulation of several ...
EEG slow waves, the hallmarks of NREM sleep are thought to be crucial for the regulation of several ...
EEG slow waves are the main hallmark of NREM sleep. Unraveling the interactions among cortical and s...
Slow wave sleep (SWS) is associated with spontaneous brain oscillations that are thought to particip...
Intracellular studies reveal that, during slow wave sleep (SWS), the entire cortical network can swi...
STUDY OBJECTIVES: The mechanisms responsible for the homeostatic decrease of slow-wave activity (SWA...
STUDY OBJECTIVES: The mechanisms responsible for the homeostatic decrease of slow-wave activity (SWA...
During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neural silence (d...
During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neural silence (d...
Recent neuroimaging studies characterized the neural correlates of slow waves and spindles during hu...
Sleep can be distinguished from wake by changes in brain electrical activity, typically assessed usi...
Slow oscillations (< 1 Hz) in the non-rapid eye movement (NREM) sleep electroencephalogram (EEG) res...
BACKGROUND:During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neural...
Sleep studies often observe differences in slow wave activity (SWA) during non-rapid eye movement sl...
EEG slow waves, the hallmarks of NREM sleep are thought to be crucial for the regulation of several ...
EEG slow waves, the hallmarks of NREM sleep are thought to be crucial for the regulation of several ...
EEG slow waves, the hallmarks of NREM sleep are thought to be crucial for the regulation of several ...
EEG slow waves are the main hallmark of NREM sleep. Unraveling the interactions among cortical and s...
Slow wave sleep (SWS) is associated with spontaneous brain oscillations that are thought to particip...
Intracellular studies reveal that, during slow wave sleep (SWS), the entire cortical network can swi...
STUDY OBJECTIVES: The mechanisms responsible for the homeostatic decrease of slow-wave activity (SWA...
STUDY OBJECTIVES: The mechanisms responsible for the homeostatic decrease of slow-wave activity (SWA...
During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neural silence (d...
During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neural silence (d...
Recent neuroimaging studies characterized the neural correlates of slow waves and spindles during hu...
Sleep can be distinguished from wake by changes in brain electrical activity, typically assessed usi...
Slow oscillations (< 1 Hz) in the non-rapid eye movement (NREM) sleep electroencephalogram (EEG) res...
BACKGROUND:During non-rapid eye movement (NREM) sleep synchronous neural oscillations between neural...
Sleep studies often observe differences in slow wave activity (SWA) during non-rapid eye movement sl...