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Ubiquity of collective irregular dynamics in balanced networks of spiking neurons
Published 3 Nov 2017 in nlin.AO, cond-mat.dis-nn, nlin.CD, and q-bio.NC | (1711.01096v3)
Abstract: We revisit the dynamics of a prototypical model of balanced activity in networks of spiking neutrons. A detailed investigation of the thermodynamic limit for fixed density of connections (massive coupling) shows that, when inhibition prevails, the asymptotic regime is not asynchronous but rather characterized by a self-sustained irregular, macroscopic (collective) dynamics. So long as the connectivity is massive, this regime is found in many different setups: leaky as well as quadratic integrate-and-fire neurons; large and small coupling strength; weak and strong external currents.
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