Pages that link to "Item:Q1889244"
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The following pages link to Study of neuronal gain in a conductance-based leaky integrate-and-fire neuron model with balanced excitatory and inhibitory synaptic input (Q1889244):
Displaying 20 items.
- Feedback-induced gain control in stochastic spiking networks (Q732707) (← links)
- The response of cortical neurons to in vivo-like input current: Theory and experiment (Q999422) (← links)
- How does transient signaling input affect the spike timing of postsynaptic neuron near the threshold regime: an analytical study (Q1628229) (← links)
- Balanced neurons: analysis of leaky integrate-and-fire neurons with reversal potentials (Q1889422) (← links)
- Analysis of the dendritic integration of excitatory and inhibitory inputs using cable models (Q2341045) (← links)
- A review of the integrate-and-fire neuron model: I. Homogeneous synaptic input (Q2373188) (← links)
- Analysis of a stochastic neuronal model with excitatory inputs and state-dependent effects (Q2466549) (← links)
- Mechanism of gain modulation at single neuron and network levels (Q2631512) (← links)
- Increasing inhibitory input increases neuronal firing rate: why and when? Diffusion process cases (Q2767207) (← links)
- Derivation of the visual contrast response function by maximizing information rate (Q2780841) (← links)
- Minimal Models of Adapted Neuronal Response to <i>In Vivo</i>–Like Input Currents (Q3160479) (← links)
- Simultaneous Rate-Synchrony Codes in Populations of Spiking Neurons (Q3370036) (← links)
- The Effect of NMDA Receptors on Gain Modulation (Q3370743) (← links)
- Synaptic input statistics tune the variability and reproducibility of neuronal responses (Q3531613) (← links)
- Statistics of subthreshold neuronal voltage fluctuations due to conductance-based synaptic shot noise (Q3531614) (← links)
- Spike-Timing-Dependent Plasticity: The Relationship to Rate-Based Learning for Models with Weight Dynamics Determined by a Stable Fixed Point (Q4832471) (← links)
- Dynamic Gain Changes During Attentional Modulation (Q5423497) (← links)
- Stimulus Competition by Inhibitory Interference (Q5699305) (← links)
- Synaptic Shot Noise and Conductance Fluctuations Affect the Membrane Voltage with Equal Significance (Q5706667) (← links)
- Impact of axonal delay on structure development in a multi-layered network (Q6055153) (← links)