Abstract
Large-amplitude sleep slow oscillations group faster neuronal oscillations and are of functional relevance for memory performance. However, relatively little is known about the impact of slow oscillations on functionally coupled networks. Here, we provide a comprehensive view on how human slow oscillatory dynamics influence various measures of brain processing. We demonstrate that slow oscillations coordinate interregional cortical communication, as assessed by phase synchrony in the sleep spindle frequency range andcross-frequencycouplingbetweenspindleandbetaactivity.Furthermore,weshowthattheorganizingroleofslowoscillations is restricted to circumscribed topographical areas. These findings add importantly to our basic understanding of the orchestrating role of slow oscillations. In addition, they are of considerable relevance for accounts of sleep-dependent memory reprocessing and consolidation.
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Cox, R., Van Driel, J., De Boer, M., & Talamini, L. M. (2014). Slow oscillations during sleep coordinate interregional communication in cortical networks. Journal of Neuroscience, 34(50), 16890–16901. https://doi.org/10.1523/JNEUROSCI.1953-14.2014
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