An Algorithm for Modifying Neurotransmitter Release Probability Based on Pre- and Postsynaptic Spike Timing
From MaRDI portal
Publication:4814232
DOI10.1162/089976601300014628zbMath1047.92014OpenAlexW2162222153WikidataQ33933380 ScholiaQ33933380MaRDI QIDQ4814232
Henry Markram, Walter Senn, Misha V. Tsodyks
Publication date: 7 September 2004
Published in: Neural Computation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1162/089976601300014628
Related Items (26)
Constraint-induced intervention as an emergent phenomenon from synaptic competition in biological systems ⋮ Multispike Interactions in a Stochastic Model of Spike-Timing-Dependent Plasticity ⋮ Relating STDP to BCM ⋮ How the Shape of Pre- and Postsynaptic Signals Can Influence STDP: A Biophysical Model ⋮ Spike-Timing-Dependent Plasticity: The Relationship to Rate-Based Learning for Models with Weight Dynamics Determined by a Stable Fixed Point ⋮ The impact of short term synaptic depression and stochastic vesicle dynamics on neuronal variability ⋮ Synaptic dynamics: linear model and adaptation algorithm ⋮ Slow-fast dynamics in a neurotransmitter release model: delayed response to a time-dependent input signal ⋮ Temporal Dynamics of Rate-Based Synaptic Plasticity Rules in a Stochastic Model of Spike-Timing-Dependent Plasticity ⋮ Synaptic and Temporal Ensemble Interpretation of Spike-Timing-Dependent Plasticity ⋮ Phenomenological models of synaptic plasticity based on spike timing ⋮ Kinetic models of spike-timing dependent plasticity and their functional consequences in detecting correlations ⋮ Neurons Tune to the Earliest Spikes Through STDP ⋮ A Non-Markovian Random Walk Underlies a Stochastic Model of Spike-Timing-Dependent Plasticity ⋮ Reducing the Variability of Neural Responses: A Computational Theory of Spike-Timing-Dependent Plasticity ⋮ Intrinsic Stabilization of Output Rates by Spike-Based Hebbian Learning ⋮ Optimality Model of Unsupervised Spike-Timing-Dependent Plasticity: Synaptic Memory and Weight Distribution ⋮ Activity-Dependent Development of Axonal and Dendritic Delays, or, Why Synaptic Transmission Should Be Unreliable ⋮ Local learning rules: predicted influence of dendritic location on synaptic modification in spike-timing-dependent plasticity ⋮ Learning Real-World Stimuli in a Neural Network with Spike-Driven Synaptic Dynamics ⋮ The Mean Time to Express Synaptic Plasticity in Integrate-and-Express, Stochastic Models of Synaptic Plasticity Induction ⋮ Temporal sequence detection with spiking neurons: towards recognizing robot language instructions ⋮ Stability Against Fluctuations: Scaling, Bifurcations, and Spontaneous Symmetry Breaking in Stochastic Models of Synaptic Plasticity ⋮ Optimal Spike-Timing-Dependent Plasticity for Precise Action Potential Firing in Supervised Learning ⋮ Analytical Integrate-and-Fire Neuron Models with Conductance-Based Dynamics for Event-Driven Simulation Strategies ⋮ Taming Fluctuations in a Stochastic Model of Spike-Timing-Dependent Plasticity
Cites Work
This page was built for publication: An Algorithm for Modifying Neurotransmitter Release Probability Based on Pre- and Postsynaptic Spike Timing