Spike-Timing Dependent Plasticity (STDP) is characterized by a wide range of temporal kernels. However, much of the theoretical work has focused on a specific kernel - the "temporally asymmetric Hebbian" learning rules. Previous studies linked excitatory STDP to positive feedback that can account for the emergence of response selectivity. Inhibitory plasticity was associated with negative feedback that can balance the excitatory and inhibitory inputs. Here we study the possible computational role of the temporal structure of the STDP. We represent the STDP as a superposition of two processes: potentiation and depression. This allows us to model a wide range of experimentally observed STDP kernels, from Hebbian to anti-Hebbian, by varying a ...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
International audienceHebbian plasticity describes a basic mechanism for synaptic plasticity whereby...
In this thesis we are concerned with activity-dependent neuronal plasticity in the nervous system, i...
Spike-Timing Dependent Plasticity (STDP) is characterized by a wide range of temporal kernels. Howev...
Spike Timing-Dependent Plasticity has been found to assume many different forms. The classic STDP cu...
Recent experimental observations of spike-timing-dependent synaptic plasticity (STDP) have revitaliz...
International audienceWe investigate spike-timing dependent plasticity (STPD) in the case of a synap...
International audienceWe investigate spike-timing dependent plasticity (STPD) in the case of a synap...
International audienceWe investigate spike-timing dependent plasticity (STPD) in the case of a synap...
International audienceWe investigate spike-timing dependent plasticity (STPD) in the case of a synap...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
Abstract. Spike-timing-dependent plasticity (STDP) strengthens synapses that are activated immediate...
International audienceWe investigate spike-timing dependent plasticity (STPD) in the case of a synap...
[5th International Workshop on Neural Coding Aula, Italy, September 20-23, 2003]In spike-timing-depe...
Spike-timing-dependent plasticity (STDP) is described by long-term potentiation (LTP), when a presyn...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
International audienceHebbian plasticity describes a basic mechanism for synaptic plasticity whereby...
In this thesis we are concerned with activity-dependent neuronal plasticity in the nervous system, i...
Spike-Timing Dependent Plasticity (STDP) is characterized by a wide range of temporal kernels. Howev...
Spike Timing-Dependent Plasticity has been found to assume many different forms. The classic STDP cu...
Recent experimental observations of spike-timing-dependent synaptic plasticity (STDP) have revitaliz...
International audienceWe investigate spike-timing dependent plasticity (STPD) in the case of a synap...
International audienceWe investigate spike-timing dependent plasticity (STPD) in the case of a synap...
International audienceWe investigate spike-timing dependent plasticity (STPD) in the case of a synap...
International audienceWe investigate spike-timing dependent plasticity (STPD) in the case of a synap...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
Abstract. Spike-timing-dependent plasticity (STDP) strengthens synapses that are activated immediate...
International audienceWe investigate spike-timing dependent plasticity (STPD) in the case of a synap...
[5th International Workshop on Neural Coding Aula, Italy, September 20-23, 2003]In spike-timing-depe...
Spike-timing-dependent plasticity (STDP) is described by long-term potentiation (LTP), when a presyn...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
International audienceHebbian plasticity describes a basic mechanism for synaptic plasticity whereby...
In this thesis we are concerned with activity-dependent neuronal plasticity in the nervous system, i...