We calculate the instantaneous firing rate of a stochastic integrate-and-fire neuron driven by an arbitrary time-dependent signal up to second order in the signal amplitude. For cosine signals. this weakly nonlinear theory reveals: (i) a frequency-dependent change of the time-averaged firing rate reminiscent of frequency locking in deterministic oscillators; (ii) higher harmonics in t... https://www.kaliboat.com/product-category/steak-knives-cutlerykitchen-barflatware-knives-gardenkitchen-dining-home-4/
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