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Updated: May 29, 2026

Quantifying Infra-slow Dynamics of Spectral Power and Heart Rate in Sleeping Mice
Published on: August 2, 2017
The multiple time scales of sleep dynamics as a challenge for modelling the sleeping brain
Eckehard Olbrich1, Jens Christian Claussen, Peter Achermann
1Max Planck Institute for Mathematics in the Sciences, Inselstraße 22, 04103 Leipzig, Germany. olbrich@mis.mpg.de
Abstract:
A particular property of the sleeping brain is that it exhibits dynamics on very different time scales ranging from the typical sleep oscillations such as sleep spindles and slow waves that can be observed in electroencephalogram (EEG) segments of several seconds duration over the transitions between the different sleep stages on a time scale of minutes to the dynamical processes involved in sleep regulation with typical time constants in the range of hours. There is an increasing body of work on mathematical and computational models addressing these different dynamics, however, usually considering only processes on a single time scale. In this paper, we review and present a new analysis of the dynamics of human sleep EEG at the different time scales and relate the findings to recent modelling efforts pointing out both the achievements and remaining challenges.
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