Publication | Open Access
A Memristor SPICE Model Accounting for Synaptic Activity Dependence
46
Citations
19
References
2015
Year
EngineeringSynaptic TransmissionNon-volatile Memristance ChangesPhase Change MemoryNeurochipNeurodynamicsNeuromorphic EngineeringBiophysicsActivity Dependence DynamicsElectrical EngineeringComputer EngineeringNervous SystemSynaptic Activity DependenceSynaptic PlasticityNeurophysiologyComputational NeurosciencePractical Memristive DevicesNeuroscienceBrain-like ComputingMedicine
In this work, we propose a new memristor SPICE model that accounts for the typical synaptic characteristics that have been previously demonstrated with practical memristive devices. We show that this model could account for both volatile and non-volatile memristance changes under distinct stimuli. We then demonstrate that our model is capable of supporting typical STDP with simple non-overlapping digital pulse pairs. Finally, we investigate the capability of our model to simulate the activity dependence dynamics of synaptic modification and present simulated results that are in excellent agreement with biological results.
| Year | Citations | |
|---|---|---|
Page 1
Page 1