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research article

Fluctuations and information filtering in coupled populations of spiking neurons with adaptation

Deger, Moritz  
•
Schwalger, Tilo  
•
Naud, Richard  
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2014
Physical Review E

Finite-sized populations of spiking elements are fundamental to brain function but also are used in many areas of physics. Here we present a theory of the dynamics of finite-sized populations of spiking units, based on a quasirenewal description of neurons with adaptation. We derive an integral equation with colored noise that governs the stochastic dynamics of the population activity in response to time-dependent stimulation and calculate the spectral density in the asynchronous state. We show that systems of coupled populations with adaptation can generate a frequency band in which sensory information is preferentially encoded. The theory is applicable to fully as well as randomly connected networks and to leaky integrate-and-fire as well as to generalized spiking neurons with adaptation on multiple time scales. © Published by the American Physical Society.

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Type
research article
DOI
10.1103/PhysRevE.90.062704
Web of Science ID

WOS:000346610900016

ArXiv ID

1311.4206

Author(s)
Deger, Moritz  
Schwalger, Tilo  
Naud, Richard  
Gerstner, Wulfram  
Date Issued

2014

Published in
Physical Review E
Volume

90

Issue

6

Article Number

062704

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCN  
Available on Infoscience
November 13, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/108598
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