Oscillatory-Quality of sleep spindles: from properties to function
Blanco-Duque, C.; Bond, S. A.; Krone, L. B.; Dufour, J.-P.; Gillen, E. C. P.; Kahn, M. C.; Purple, R. J.; Bannerman, D. M.; Mann, E. O.; Achermann, P.; Olbrich, E.; Vyazovskiy, V. V.
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Sleep spindles are traditionally defined as 10-15Hz thalamo-cortical oscillations typical of NREM sleep. While substantial heterogeneity in the appearance or spatio-temporal dynamics of spindle events is well recognised, the physiological relevance of the underlying fundamental property - the oscillatory strength - has not been studied. Here we introduce a novel metric called oscillatory Quality (o-Quality), which is derived by fitting an auto-regressive model to short segments of electrophysiological signals, recorded from the cortex in mice, to identify and calculate the damping of spindle oscillations. We find that the o-Quality of spindles varies markedly across cortical layers and regions and reflects the level of synchrony within and between cortical networks. Furthermore, the o-Quality of spindles varies as a function of sleep-wake history, determines the strength of coupling between spindles and slow waves, and influences the responsiveness to sensory stimulation during sleep. Thus, the o-Quality emerges as a metric that, for the first time, directly links the spatio-temporal dynamics of sleep spindles with their functional role.
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