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Input Fluctuations effects on f-I curves (Arsiero et al. 2007)
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"... We examined in vitro frequency versus current (f-I) relationships of layer 5 (L5) pyramidal cells of the rat medial prefrontal cortex (mPFC) using fluctuating stimuli. ...our results show that mPFC L5 pyramidal neurons retain an increased sensitivity to input fluctuations, whereas their sensitivity to the input mean diminishes to near zero. This implies that the discharge properties of L5 mPFC neurons are well suited to encode input fluctuations rather than input mean in their firing rates, with important consequences for information processing and stability of persistent activity at the network level."
Arsiero M, Lüscher HR, Lundstrom BN, Giugliano M (2007) The impact of input fluctuations on the frequency-current relationships of layer 5 pyramidal neurons in the rat medial prefrontal cortex.
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Neuron or other electrically excitable cell;
Prefrontal cortex (PFC);
Neocortex L5/6 pyramidal GLU cell;
Spike Frequency Adaptation;
for information about:
Neocortex L5/6 pyramidal GLU cell
Other models using Ifluct1.mod:
Carbon nanotubes as electrical interfaces to neurons (Giugliano et al. 2008)
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