Winner-Take-All (WTA) networks are recurrently connected populations of excitatory and inhibitory neurons that represent promising candidate microcircuits for implementing cortical computation. WTAs can perform powerful computations, ranging from signal restoration to state-dependent processing. However, such networks require fine tuned connectivity parameters to keep the network dynamics within stable operating regimes. In this article, we show how such stability can emerge autonomously through an interaction of biologically plausible plasticity mechanisms that operate simultaneously on all excitatory and inhibitory synapses of the network. A weight-dependent plasticity rule is derived from the triplet spike-timing dependent plasticity mod...
Synaptic connections in neuronal circuits are modulated by pre- and post-synaptic spiking activity. ...
Spike-timing dependent plasticity (STDP), a widespread synaptic modification mechanism, is sensitive...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
Winner-Take-All (WTA) networks are recurrently connected populations of excitatory and inhibitory ne...
Winner-Take-All (WTA) networks are recurrently connected populations of excitatory and inhibitory ne...
Winner-Take-All (WTA) networks are recurrently connected populations of excitatory and inhibitory ne...
Repetitive activation of subpopulations of neurons leads to the formation of neuronal assemblies, wh...
The synaptic connectivity of cortical networks features an overrepresentation of certain wiring moti...
We studied the hypothesis that synaptic dynamics is controlled by three basic principles: (1) synaps...
Copyright © 2012 S. Fernando and K. Yamada. This is an open access article distributed under the Cre...
The dynamics of local cortical networks are irregular, but correlated. Dynamic excitatory-inhibitory...
The synaptic connectivity of cortical networks features an overrepresentation of certain wir-ing mot...
Abstract\ud \ud The synaptic connectivity of cortical networks features an overrepresentation of cer...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
Abstract\ud \ud The synaptic connectivity of cortical networks features an overrepresentation of cer...
Synaptic connections in neuronal circuits are modulated by pre- and post-synaptic spiking activity. ...
Spike-timing dependent plasticity (STDP), a widespread synaptic modification mechanism, is sensitive...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
Winner-Take-All (WTA) networks are recurrently connected populations of excitatory and inhibitory ne...
Winner-Take-All (WTA) networks are recurrently connected populations of excitatory and inhibitory ne...
Winner-Take-All (WTA) networks are recurrently connected populations of excitatory and inhibitory ne...
Repetitive activation of subpopulations of neurons leads to the formation of neuronal assemblies, wh...
The synaptic connectivity of cortical networks features an overrepresentation of certain wiring moti...
We studied the hypothesis that synaptic dynamics is controlled by three basic principles: (1) synaps...
Copyright © 2012 S. Fernando and K. Yamada. This is an open access article distributed under the Cre...
The dynamics of local cortical networks are irregular, but correlated. Dynamic excitatory-inhibitory...
The synaptic connectivity of cortical networks features an overrepresentation of certain wir-ing mot...
Abstract\ud \ud The synaptic connectivity of cortical networks features an overrepresentation of cer...
The information processing abilities of neural circuits arise from their synaptic connection pattern...
Abstract\ud \ud The synaptic connectivity of cortical networks features an overrepresentation of cer...
Synaptic connections in neuronal circuits are modulated by pre- and post-synaptic spiking activity. ...
Spike-timing dependent plasticity (STDP), a widespread synaptic modification mechanism, is sensitive...
The information processing abilities of neural circuits arise from their synaptic connection pattern...