Spike timing-dependent plasticity (STDP) experiments have shown that a synapse is strengthened when a presynaptic spike precedes a postsynaptic one and depressed vice versa. The canonical form of STDP has been shown to have an asymmetric shape with the peak long-term potentiation at 16 ms and the peak long-term depression at 25 ms. Experiments in hippocampal cultures with more complex stimuli such as triplets (one presynaptic spike combined with two postsynaptic spikes or one postsynaptic spike with two presynaptic spikes) have shown that pre–post–pre spike triplets result in no change in synaptic strength, whereas post–pre– post spike triplets lead to significant potentiation. The sign and magnitude of STDP have also been experim...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
Spike timing-dependent plasticity (STDP) is a causal form of Hebb’s law of synaptic plasticity, wher...
It is widely accepted that the direction and magnitude of synaptic plasticity depends on post-synapt...
Spike timing dependent plasticity (STDP) is a synaptic learning rule where the relative timing betw...
Spike timing dependent plasticity (STDP) has been demonstrated in various neural systems of many an...
Spike timing dependent plasticity (STDP) requires the temporal association of presynaptic and posts...
International audienceHebbian plasticity describes a basic mechanism for synaptic plasticity whereby...
Synaptic plasticity is believed to represent the neural correlate of mammalian learning and memory f...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
Spike timing dependent plasticity (STDP) is a phenomenon in which the precise timing of spikes affec...
Synaptic strength can be modified by the relative timing of pre and postsynaptic activity, a process...
Spike timing dependent plasticity (STDP) is a phenomenon in which the precise timing of spikes affec...
It has been known for some time that the synapses of the CA1 pyramidal cells are surprisingly unreli...
Summary: The NMDA spike is a long-lasting nonlinear phenomenon initiated locally in the dendritic br...
International audienceIn spike-timing dependent plasticity (STDP) change in synaptic strength depend...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
Spike timing-dependent plasticity (STDP) is a causal form of Hebb’s law of synaptic plasticity, wher...
It is widely accepted that the direction and magnitude of synaptic plasticity depends on post-synapt...
Spike timing dependent plasticity (STDP) is a synaptic learning rule where the relative timing betw...
Spike timing dependent plasticity (STDP) has been demonstrated in various neural systems of many an...
Spike timing dependent plasticity (STDP) requires the temporal association of presynaptic and posts...
International audienceHebbian plasticity describes a basic mechanism for synaptic plasticity whereby...
Synaptic plasticity is believed to represent the neural correlate of mammalian learning and memory f...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
Spike timing dependent plasticity (STDP) is a phenomenon in which the precise timing of spikes affec...
Synaptic strength can be modified by the relative timing of pre and postsynaptic activity, a process...
Spike timing dependent plasticity (STDP) is a phenomenon in which the precise timing of spikes affec...
It has been known for some time that the synapses of the CA1 pyramidal cells are surprisingly unreli...
Summary: The NMDA spike is a long-lasting nonlinear phenomenon initiated locally in the dendritic br...
International audienceIn spike-timing dependent plasticity (STDP) change in synaptic strength depend...
Hebbian plasticity describes a basic mechanism for synaptic plasticity whereby synaptic weights evol...
Spike timing-dependent plasticity (STDP) is a causal form of Hebb’s law of synaptic plasticity, wher...
It is widely accepted that the direction and magnitude of synaptic plasticity depends on post-synapt...