We suggest a mechanism based on spike-timing-dependent plasticity (STDP) of synapses to store, retrieve and predict temporal sequences. The mechanism is demonstrated in a model system of simplified integrate-and-fire type neurons densely connected by STDP synapses. All synapses are modified according to the so-called normal STDP rule observed in various real biological synapses. After conditioning through repeated input of a limited number of temporal sequences, the system is able to complete the temporal sequence upon receiving the input of a fraction of them. This is an example of effective unsupervised learning in a biologically realistic system. We investigate the dependence of learning success on entrainment time, system size, and pres...
<div><p>Precise spatio-temporal patterns of neuronal action potentials underly e.g. sensory represen...
Precise spatio-temporal patterns of neuronal action potentials underly e.g. sensory representations ...
Incorporating the spike-timing-dependent synaptic plasticity (STDP) into a learning rule, we study s...
It has previously been shown that by using spike-timing-dependent plasticity (STDP), neurons can ada...
AbstractWe propose a temporal sequence learning model in spiking neural networks consisting of Izhik...
We propose a temporal sequence learning model in spiking neural networks consisting of Izhikevich sp...
How can an animal learn from experience? How can it train sensors, such as the auditory or tactile s...
Recent experimental observations of spike-timing-dependent synaptic plasticity (STDP) have revitaliz...
Experimental studies have observed Long Term synaptic Potentiation (LTP) when a presynaptic neuron f...
In sensory neural system, external asynchronous stimuli play an important role in perceptual learnin...
The influence of a weight-dependent spike-timing dependent plasticity (STDP) rule on the temporal ev...
Recent experimental observations of spike-timing-dependent synaptic plasticity (STDP) have revitaliz...
Assuming asymmetric time window of the spike-timing-dependent synaptic plasticity (STDP), we study s...
textThe neural basis of the brain's ability to represent time, which is an essential component of co...
Spike-timing dependent plasticity has been associated with neural development, learning, and memory....
<div><p>Precise spatio-temporal patterns of neuronal action potentials underly e.g. sensory represen...
Precise spatio-temporal patterns of neuronal action potentials underly e.g. sensory representations ...
Incorporating the spike-timing-dependent synaptic plasticity (STDP) into a learning rule, we study s...
It has previously been shown that by using spike-timing-dependent plasticity (STDP), neurons can ada...
AbstractWe propose a temporal sequence learning model in spiking neural networks consisting of Izhik...
We propose a temporal sequence learning model in spiking neural networks consisting of Izhikevich sp...
How can an animal learn from experience? How can it train sensors, such as the auditory or tactile s...
Recent experimental observations of spike-timing-dependent synaptic plasticity (STDP) have revitaliz...
Experimental studies have observed Long Term synaptic Potentiation (LTP) when a presynaptic neuron f...
In sensory neural system, external asynchronous stimuli play an important role in perceptual learnin...
The influence of a weight-dependent spike-timing dependent plasticity (STDP) rule on the temporal ev...
Recent experimental observations of spike-timing-dependent synaptic plasticity (STDP) have revitaliz...
Assuming asymmetric time window of the spike-timing-dependent synaptic plasticity (STDP), we study s...
textThe neural basis of the brain's ability to represent time, which is an essential component of co...
Spike-timing dependent plasticity has been associated with neural development, learning, and memory....
<div><p>Precise spatio-temporal patterns of neuronal action potentials underly e.g. sensory represen...
Precise spatio-temporal patterns of neuronal action potentials underly e.g. sensory representations ...
Incorporating the spike-timing-dependent synaptic plasticity (STDP) into a learning rule, we study s...