Title of article
Neuron firing in driven nonlinear integrate-and-fire models
Author/Authors
Kostur، نويسنده , , Marcin and Schindler، نويسنده , , Michael and Talkner، نويسنده , , Peter and Hنnggi، نويسنده , , Peter، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
10
From page
302
To page
311
Abstract
Statistical properties of neuron firing are studied in the framework of a nonlinear leaky integrate-and-fire model that is driven by a slow periodic subthreshold signal. The firing events are characterized by first passage time densities. The experimentally better accessible interspike interval density generally depends on the sojourn times in a refractory state of the neuron. This aspect is not part of the integrate-and-fire model and must be modelled additionally. For a large class of refractory dynamics, a general expression for the interspike interval density is given and further evaluated for the two cases with an instantaneous resetting (i.e. no refractory state) and a refractory state possessing a deterministic lifetime. First passage time densities and interspike interval densities following from the proposed theory compare favorably with precise numerical simulations.
Keywords
Time dependent rates , Interspike interval density , Refractory periods , Driven nonlinear neuron models , Waiting time density
Journal title
Mathematical Biosciences
Serial Year
2007
Journal title
Mathematical Biosciences
Record number
1589048
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