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  Information transmission of mean and variance coding in integrate-and-fire neurons

Herfurth, T., & Tchumatchenko, T. (2019). Information transmission of mean and variance coding in integrate-and-fire neurons. Phys Rev E, 99(3-1), 032420. doi:10.1103/PhysRevE.99.032420.

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Herfurth, T., Author
Tchumatchenko, Tatjana1, Author           
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1Theory of neural dynamics Group, Max Planck Institute for Brain Research, Max Planck Society, ou_2461711              

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Free keywords: *Action Potentials Animals Computer Simulation Information Theory *Models, Neurological Neural Networks, Computer Neurons/*physiology Nonlinear Dynamics *Synaptic Transmission/physiology
 Abstract: Neurons process information by translating continuous signals into patterns of discrete spike times. An open question is how much information these spike times contain about signals which modulate either the mean or the variance of the somatic currents in neurons, as is observed experimentally. Here we calculate the exact information contained in discrete spike times about a continuous signal in both encoding strategies. We show that the information content about mean modulating signals is generally substantially larger than about variance modulating signals for biological parameters. Our analysis further reveals that higher information transmission is associated with a larger proportion of nonlinear signal encoding. Our study measures the complete information content of mean and variance coding and provides a method to determine what fraction of the total information is linearly decodable.

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 Dates: 2019-04-20
 Publication Status: Issued
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 Rev. Type: -
 Identifiers: Other: 30999481
DOI: 10.1103/PhysRevE.99.032420
ISSN: 2470-0053 (Electronic)2470-0045 (Linking)
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Title: Phys Rev E
Source Genre: Journal
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Pages: - Volume / Issue: 99 (3-1) Sequence Number: - Start / End Page: 032420 Identifier: -