Selectivity and Metaplasticity in a Unified Calcium-Dependent Model

Yeung, Luk Chong, Blais, Brian S., Cooper, Leon N., Shouval, Harel Z.

Neural Information Processing Systems 

A unified, biophysically motivated Calcium-Dependent Learning model has been shown to account for various rate-based and spike time-dependent paradigms for inducing synaptic plasticity. Here, we investigate the properties of this model for a multi-synapse neuron that receives inputs with different spike-train statistics. In addition, we present a physiological form of metaplasticity, an activity-driven regulation mechanism, that is essential for the robustness ofthe model.

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