4.7 Article

Dynamical state of the network determines the efficacy of single neuron properties in shaping the network activity

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SCIENTIFIC REPORTS
卷 6, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/srep26029

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资金

  1. Bundesministerium fuer Forschung und Technologie (German Ministry for Research and Technology) [01GQ0830]
  2. Deutsche Forschungsgemeinschaft (DFG) [EXC 1086]
  3. FACETS-ITN [PITN-GA-2009-237955]
  4. Ministry for Education and Research
  5. Ministry for Science, Research and Arts Baden-Wuerttemberg
  6. open access publication fund of the University of Freiburg, Germany

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Spike patterns are among the most common electrophysiological descriptors of neuron types. Surprisingly, it is not clear how the diversity in firing patterns of the neurons in a network affects its activity dynamics. Here, we introduce the state-dependent stochastic bursting neuron model allowing for a change in its firing patterns independent of changes in its input-output firing rate relationship. Using this model, we show that the effect of single neuron spiking on the network dynamics is contingent on the network activity state. While spike bursting can both generate and disrupt oscillations, these patterns are ineffective in large regions of the network state space in changing the network activity qualitatively. Finally, we show that when single-neuron properties are made dependent on the population activity, a hysteresis like dynamics emerges. This novel phenomenon has important implications for determining the network response to time-varying inputs and for the network sensitivity at different operating points.

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