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A reservoir of timescales in random neural networks

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arxiv 2110.09165 v2 pith:KVXRLS6F submitted 2021-10-18 cond-mat.dis-nn nlin.CDq-bio.NC

classification cond-mat.dis-nnnlin.CDq-bio.NC
keywords neuraltimescalesactivitycircuitsclustersfastinputnetworks
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The temporal activity of many biological systems, including neural circuits, exhibits fluctuations simultaneously varying over a large range of timescales. The mechanisms leading to this temporal heterogeneity are yet unknown. Here we show that random neural networks endowed with a distribution of self-couplings, representing functional neural clusters of different sizes, generate multiple timescales activity spanning several orders of magnitude. When driven by a time-dependent broadband input, slow and fast neural clusters preferentially entrain slow and fast spectral components of the input, respectively, suggesting a potential mechanism for spectral demixing in cortical circuits.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Does the brain behave like a (complex) network? I. Dynamics

    q-bio.NC 2024-12 unverdicted novelty 4.0 of 10

    A review arguing that the brain's network structure is an empirical hypothesis about dynamic relevance, not an established fact.

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