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- W1520676671 endingPage "028702" @default.
- W1520676671 startingPage "028702" @default.
- W1520676671 abstract "Because a brain consists of tremendous neuronal networks with different neuron numbers ranging from tens to tens of thousands, we study the coherence resonance due to ion channel noises in globally coupled neuronal networks with different neuron numbers. We confirm that for all neuronal networks with different neuron numbers there exist the array enhanced coherence resonance and the optimal synaptic conductance to cause the maximal spiking coherence. Furthermoremore, the enhancement effects of coupling on spiking coherence and on optimal synaptic conductance are almost the same, regardless of the neuron numbers in the neuronal networks. Therefore for all the neuronal networks with different neuron numbers in the brain, relative weak synaptic conductance (0.1 mS/cm2) is sufficient to induce the maximal spiking coherence and the best sub-threshold signal encoding." @default.
- W1520676671 created "2016-06-24" @default.
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- W1520676671 date "2012-02-01" @default.
- W1520676671 modified "2023-09-23" @default.
- W1520676671 title "Coherence resonance in globally coupled neuronal networks with different neuron numbers" @default.
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- W1520676671 doi "https://doi.org/10.1088/1674-1056/21/2/028702" @default.
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