Pages that link to "Item:Q5387447"
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The following pages link to Two Computational Regimes of a Single-Compartment Neuron Separated by a Planar Boundary in Conductance Space (Q5387447):
Displaying 10 items.
- Delayed feedback makes neuronal firing statistics non-Markovian (Q362512) (← links)
- Activity-driven computational strategies of a dynamically regulated integrate-and-fire model neuron (Q1584096) (← links)
- The domain of neuronal firing on a plane of input current and conductance (Q1704936) (← links)
- Molecular variability elicits a tunable switch with discrete neuromodulatory response phenotypes (Q1704958) (← links)
- Modeling multiple time scale firing rate adaptation in a neural network of local field potentials (Q1732678) (← links)
- Study of neuronal gain in a conductance-based leaky integrate-and-fire neuron model with balanced excitatory and inhibitory synaptic input (Q1889244) (← links)
- Switching in Cerebellar Stellate Cell Excitability in Response to a Pair of Inhibitory/Excitatory Presynaptic Inputs: A Dynamical System Perspective (Q5131190) (← links)
- Learning Quadratic Receptive Fields from Neural Responses to Natural Stimuli (Q5378221) (← links)
- Structure and dynamics that specialize neurons for high-frequency coincidence detection in the barn owl nucleus laminaris (Q6054348) (← links)
- A biophysical and statistical modeling paradigm for connecting neural physiology and function (Q6172492) (← links)