By controlling the state of neuronal populations, neuromodulators ultimately affect behavior. A key neuromodulation mechanism is the alteration of neuronal excitability via the modulation of ion channel expression. This type of neuromodulation is normally studied with conductance-based models, but those models are computationally challenging for large-scale network simulations needed in population studies. This article studies the modulation properties of the multiquadratic integrate-and-fire model, a generalization of the classical quadratic integrate-and-fire model. The model is shown to combine the computational economy of integrate-and-fire modeling and the physiological interpretability of conductance-based modeling. It is therefore a ...
The profile of transmembrane-channel expression in neurons is class dependent and a crucial determin...
Neuromodulation is present throughout the nervous system and serves a critical role for circuit func...
The nervous system, including the brain, is a complex network with billions of complex neurons. Ion ...
By controlling the state of neuronal populations, neuromodulators ultimately affect behavior. A key ...
By controlling the state of neuronal populations, neuromodulators ultimately affect behaviour. A key...
By controlling the state of neuronal populations, neuromodulators ultimately affect behaviour. A key...
The mathematical modelling of behaviour at the single neuron level is an important part of computati...
This paper proposes a methodology to extract a low-dimensional integrate-and-fire model from an arbi...
We demonstrate that single-variable integrate-and-fire models can quantitatively capture the dynamic...
The framework of Hodgkin-Huxley conductance-based models provides an excellent description of the el...
Integrate-and-fire models are mainstays of the study of single-neuron response properties and emerge...
Neuronal spiking exhibits an exquisite combination of modulation and robustness properties, rarely m...
We demonstrate that single-variable integrate-and-fire models can quantitatively capture the dynamic...
We introduce a two-dimensional integrate-and-fire model that combines an exponential spike mechanism...
When does neuromodulation of a single neuron influence the output of the entire network? We construc...
The profile of transmembrane-channel expression in neurons is class dependent and a crucial determin...
Neuromodulation is present throughout the nervous system and serves a critical role for circuit func...
The nervous system, including the brain, is a complex network with billions of complex neurons. Ion ...
By controlling the state of neuronal populations, neuromodulators ultimately affect behavior. A key ...
By controlling the state of neuronal populations, neuromodulators ultimately affect behaviour. A key...
By controlling the state of neuronal populations, neuromodulators ultimately affect behaviour. A key...
The mathematical modelling of behaviour at the single neuron level is an important part of computati...
This paper proposes a methodology to extract a low-dimensional integrate-and-fire model from an arbi...
We demonstrate that single-variable integrate-and-fire models can quantitatively capture the dynamic...
The framework of Hodgkin-Huxley conductance-based models provides an excellent description of the el...
Integrate-and-fire models are mainstays of the study of single-neuron response properties and emerge...
Neuronal spiking exhibits an exquisite combination of modulation and robustness properties, rarely m...
We demonstrate that single-variable integrate-and-fire models can quantitatively capture the dynamic...
We introduce a two-dimensional integrate-and-fire model that combines an exponential spike mechanism...
When does neuromodulation of a single neuron influence the output of the entire network? We construc...
The profile of transmembrane-channel expression in neurons is class dependent and a crucial determin...
Neuromodulation is present throughout the nervous system and serves a critical role for circuit func...
The nervous system, including the brain, is a complex network with billions of complex neurons. Ion ...