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        <dc:title>Alpha rhythm induces attenuation-amplification dynamics in neural activity cascades</dc:title>
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        <bibo:abstract>Rhythmical cortical activity has long been recognized as a pillar in the architecture of brain functions. Yet, the dynamic organization of its underlying neuronal population activity remains elusive. Here we uncover a unique organizational principle regulating collective neural dynamics associated with the alpha rhythm in the awake resting-state. We demonstrate that cascades of neural activity obey attenuation-amplification dynamics (AAD), with a transition from the attenuation regime—within alpha cycles—to the amplification regime—across a few alpha cycles—that correlates with the characteristic frequency of the alpha rhythm. We find that this short-term AAD is part of a large-scale, size-dependent temporal structure of neural cascades that obeys the Omori law: Following large cascades, smaller cascades occur at a rate that decays as a power-law of the time elapsed from such events—a long-term AAD regulating brain activity over the timescale of seconds. We show that such an organization corresponds to the &quot;waxing and waning&quot; of the alpha rhythm. Importantly, we observe that short- and long-term AAD are unique to the awake resting-state, being absent during NREM sleep. These results provide a quantitative, dynamical description of the so-far-qualitative notion of the &quot;waxing and waning&quot; phenomenon, and suggest the AAD as a key principle governing resting-state dynamics across timescales.</bibo:abstract>
        <bibo:startPage>25</bibo:startPage>
        <bibo:endPage>25</bibo:endPage>
        <dc:publisher>Cold Spring Harbor Laboratory</dc:publisher>
        <bibo:doi rdf:resource="10.1101/2022.03.03.482657" />
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