We study how the synaptic connections in a pair of excitable electronic neurons affect the coherence of their spike trains when the neurons are submitted to noise from independent sources. The coupling is provided by electronic circuits which mimic the dynamics of chemical AMPA synapses. In particular, we show that increasing the strength of an unidirectional synapse leads to a decrease of coherence in the post-synaptic neuron. More interestingly, we show that the decrease of coherence can be reverted if we add a synapse of sufficient strength in the reverse direction. Synaptic symmetry plays an important role in this process and, under the right choice of parameters, increases the network coherence beyond the value achieved at the resonanc...
31 pages, 11 figuresThe counter-intuitive phenomenon of coherence resonance describes a non-monotoni...
Synaptic unreliability is one of the major sources of biophysical noise in the brain. In the context...
Recently, delay-induced coherence resonance (CR) in neuronal networks with fixed coupling ...
We study how the synaptic connections in a pair of excitable electronic neurons affect the coherence...
Neuronal oscillations are observed in many brain areas in various frequency bands. Each of the frequ...
We study the effects of electrical and chemical autapse on the temporal coherence or firing regulari...
We systematically study the effects of synaptic plasticity in the model describing dynamics of elect...
The hypothesis of communication through coherence proposes that coherent or synchronous oscillations...
We study the phenomenon of noise-delayed decay in a scale-free neural network consisting of excitabl...
In this paper, we numerically study synaptic noise-induced synchronization transitions in scale-free...
Electrical synapses play a major role in setting up neuronal synchronization, but the precise mechan...
Spike timing-dependent plasticity is a fundamental adaptation mechanism of the nervous system. It in...
As information about the world traverses the brain, the signals exchanged between neurons are passed...
Through numerical simulations and electronic experiments we demonstrate the improved regularity in i...
<p>(A) Neuron 1 (pre-synaptic) is connected to neuron 2 (post-synaptic) through a synaptic circuit w...
31 pages, 11 figuresThe counter-intuitive phenomenon of coherence resonance describes a non-monotoni...
Synaptic unreliability is one of the major sources of biophysical noise in the brain. In the context...
Recently, delay-induced coherence resonance (CR) in neuronal networks with fixed coupling ...
We study how the synaptic connections in a pair of excitable electronic neurons affect the coherence...
Neuronal oscillations are observed in many brain areas in various frequency bands. Each of the frequ...
We study the effects of electrical and chemical autapse on the temporal coherence or firing regulari...
We systematically study the effects of synaptic plasticity in the model describing dynamics of elect...
The hypothesis of communication through coherence proposes that coherent or synchronous oscillations...
We study the phenomenon of noise-delayed decay in a scale-free neural network consisting of excitabl...
In this paper, we numerically study synaptic noise-induced synchronization transitions in scale-free...
Electrical synapses play a major role in setting up neuronal synchronization, but the precise mechan...
Spike timing-dependent plasticity is a fundamental adaptation mechanism of the nervous system. It in...
As information about the world traverses the brain, the signals exchanged between neurons are passed...
Through numerical simulations and electronic experiments we demonstrate the improved regularity in i...
<p>(A) Neuron 1 (pre-synaptic) is connected to neuron 2 (post-synaptic) through a synaptic circuit w...
31 pages, 11 figuresThe counter-intuitive phenomenon of coherence resonance describes a non-monotoni...
Synaptic unreliability is one of the major sources of biophysical noise in the brain. In the context...
Recently, delay-induced coherence resonance (CR) in neuronal networks with fixed coupling ...