Spike-timing dependent plasticity (STDP), a widespread synaptic modification mechanism, is sensitive to correlations between presynaptic spike trains, and organizes neural circuits in functionally useful ways. In this dissertation, I study the structures arising from STDP in a population of synapses with an emphasis on the interplay between synaptic stability and Hebbian competition, explained in Chapter 1. Starting from the simplest description of STDP which relates synaptic modification to the intervals between pairs of pre- and postsynaptic spikes, I show in Chapter 2 that stability and Hebbian competition are incompatible in this class of ``pair-based'' STDP models, either when hard bounds or soft bounds are imposed to the synapses. In ...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
International audienceHebbian plasticity describes a basic mechanism for synaptic plasticity whereby...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
Spike-timing dependent plasticity (STDP) is a widespread plasticity mechanism in the nervous system....
<div><p>Spike-timing dependent plasticity (STDP) is a widespread plasticity mechanism in the nervous...
Spike timing-dependent plasticity (STDP) modifies synaptic strengths based on timing information ava...
Spike-timing-dependent plasticity (STDP) modifies the weight (or strength) of synaptic connections b...
Rate-coded Hebbian learning, as characterized by the BCM formulation, is an established computationa...
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...
International audienceWe investigate spike-timing dependent plasticity (STPD) in the case of a synap...
<div><p>Spike timing-dependent plasticity (STDP) modifies synaptic strengths based on timing informa...
in earlier work we presented a stochastic model of spike-timing-dependent plasticity (STDP) in which...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
International audienceHebbian plasticity describes a basic mechanism for synaptic plasticity whereby...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
Spike-timing dependent plasticity (STDP) is a widespread plasticity mechanism in the nervous system....
<div><p>Spike-timing dependent plasticity (STDP) is a widespread plasticity mechanism in the nervous...
Spike timing-dependent plasticity (STDP) modifies synaptic strengths based on timing information ava...
Spike-timing-dependent plasticity (STDP) modifies the weight (or strength) of synaptic connections b...
Rate-coded Hebbian learning, as characterized by the BCM formulation, is an established computationa...
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...
International audienceWe investigate spike-timing dependent plasticity (STPD) in the case of a synap...
<div><p>Spike timing-dependent plasticity (STDP) modifies synaptic strengths based on timing informa...
in earlier work we presented a stochastic model of spike-timing-dependent plasticity (STDP) in which...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
International audienceHebbian plasticity describes a basic mechanism for synaptic plasticity whereby...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...