Optimal synchrony state for maximal information transmission
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Summary
It is found that in the encoding of input aperiodic signals, there exists a range of optimal synchronous states in the network, where the information transmission rate and coding efficiency of the network are maximized.
- Type
- article
- Published
- 2004-07-19
- Cited by
- 18
- References
- 24
- OpenAlex
- https://openalex.org/W15232292
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:6657430
Keywords
Computer science
References
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Cited by
- The recruitment and function of inhibitiory interneurons in olfactory bulb processing
- Auditory information coding by modeled cochlear nucleus neurons
- Magnetoencephalography in the study of epilepsy and consciousness.
- Weak signal propagation through noisy feedforward neuronal networks
- Increased absolute magnitude of gamma synchrony in first-episode psychosis.
- Modulatory effects of inhibition on persistent activity in a cortical microcircuit model
- Timescale-dependent shaping of correlation by olfactory bulb lateral inhibition
- Emergence of target waves in neuronal networks due to diverse forcing currents
- Change In Response Time of Neuronal Populations With Noise, Synaptical Interactions and Stimulus Frequency
- Fast activity as a surrogate marker of epileptic network function?
- Effect of the Correlation in Synaptic Background Inputs on the Regularity of Neocortical Neuron Firing Activity
- Speech Coding and Information Processing in the Peripheral Human Auditory System
- Propagation of firing rate by synchronization in a feed-forward multilayer Hindmarsh-Rose neural network
- Energy-efficient population coding constrains network size of a neuronal array system
- Reliable and efficient processing of sensory information at body temperature by rodent cortical neurons
- A simple self-decoding model for neural coding
- Increased absolute magnitude of gamma synchrony in first-episode psychosis GaryFlynn a,g,h,⁎ ,DavidAlexander b ,AnthonyHarris c,g ,ThomasWhitford g ,WilsonWong a,g ,
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