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Walter S. Carr

2 papers in the library · 706 citations · publishing 2009-2013

Papers

Decoupling of the brain's default mode network during deep sleep

Proceedings of the National Academy of Sciences June 19, 2009 Silvina G. Horovitz, Allen R. Braun, Walter S. Carr et al. 706 citations

A natural reduction of consciousness during sleep alters the correlation between components of the default-mode network (DMN), particularly reducing the involvement of frontal cortex. This suggests the DMN may play an important role in sustaining conscious awareness. The finding contrasts with a recent study in anesthetized primates that proposed DMN activity reflects general network dynamics rather than conscious mentation.

Rhythmic alternating patterns of brain activity distinguish rapid eye movement sleep from other states of consciousness.

Proceedings of the National Academy of Sciences of the United States of America June 18, 2013 Ho Ming Chow, Silvina G. Horovitz, Walter S. Carr et al.

REM sleep is a distinct state of consciousness with brain activity levels similar to wakefulness but radically different conscious awareness. Using fMRI, researchers observed that the default mode network (DMN), which reflects level of consciousness, becomes functionally uncoupled during deep sleep but recouples during REM sleep, resembling wakefulness. Unlike deep sleep or wakefulness, REM shows widespread, temporally dynamic interactions between unimodal sensorimotor areas and higher-order association cortices, including the DMN. These two systems become anticorrelated and fluctuate rhythmically in alternating multisecond epochs at 0.1 to 0.01 Hz, suggesting a model relevant to dream formation and memory consolidation.