Abstract Complex networks have been programmed to mimic the input and output functions in multiple biophysical algorithms of cortical neurons at spiking resolution. Prior research has demonstrated that the ineffectual features of membranes can be taken into account by discrete fractional commensurate, non-commensurate and variable-order patterns, which may generate multiple kinds of memory-dependent behaviour. Firing structures involving regular resonator chattering, fast, chaotic spiking and chaotic bursts play important roles in cortical nerve cell insights and execution. Yet, it is unclear how extensively the behaviour of discrete fractional-order excited mechanisms can modify firing cell attributes. It is illustrated that the discrete f...
In the brain, synchronization among cells of an assembly is a common phenomenon, and thought to be f...
Spatiotemporal activity patterns with complex dynamics have been widely observed in the cortex, but ...
<div><p>The dynamics of individual neurons are crucial for producing functional activity in neuronal...
It is important to investigate the firing activities of neurons, and previous experimental works hav...
The voltage trace of neuronal activities can follow multiple timescale dynamics that arise from corr...
Neural systems adapt to changes in stimulus statistics. However, it is not known how stimuli with co...
Fractional-order neuronal models that include memory effects can describe the rich dynamics of the f...
In the brain, synchronization among cells of an assembly is a common phenomenon, and thought to be f...
In this chapter, the dynamical behavior of the incommensurate fractional-order FitzHugh-Nagumo model...
<div><p>Excitable cells and cell membranes are often modeled by the simple yet elegant parallel resi...
Dynamic excitatory-inhibitory (E-I) balance is a paradigmatic mechanism invoked to explain the irreg...
A link is built between a biologically plausible generalized integrate and fire (GIF) neuron model w...
In cortical circuits, neural responses are highly variable during both spontaneous and evoked activi...
International audienceWe introduce an exactly integrable version of the well-known leaky integrate-a...
We propose a fractional-order (FO) model of two symmetrically coupled Hodgkin-Huxley equations and ...
In the brain, synchronization among cells of an assembly is a common phenomenon, and thought to be f...
Spatiotemporal activity patterns with complex dynamics have been widely observed in the cortex, but ...
<div><p>The dynamics of individual neurons are crucial for producing functional activity in neuronal...
It is important to investigate the firing activities of neurons, and previous experimental works hav...
The voltage trace of neuronal activities can follow multiple timescale dynamics that arise from corr...
Neural systems adapt to changes in stimulus statistics. However, it is not known how stimuli with co...
Fractional-order neuronal models that include memory effects can describe the rich dynamics of the f...
In the brain, synchronization among cells of an assembly is a common phenomenon, and thought to be f...
In this chapter, the dynamical behavior of the incommensurate fractional-order FitzHugh-Nagumo model...
<div><p>Excitable cells and cell membranes are often modeled by the simple yet elegant parallel resi...
Dynamic excitatory-inhibitory (E-I) balance is a paradigmatic mechanism invoked to explain the irreg...
A link is built between a biologically plausible generalized integrate and fire (GIF) neuron model w...
In cortical circuits, neural responses are highly variable during both spontaneous and evoked activi...
International audienceWe introduce an exactly integrable version of the well-known leaky integrate-a...
We propose a fractional-order (FO) model of two symmetrically coupled Hodgkin-Huxley equations and ...
In the brain, synchronization among cells of an assembly is a common phenomenon, and thought to be f...
Spatiotemporal activity patterns with complex dynamics have been widely observed in the cortex, but ...
<div><p>The dynamics of individual neurons are crucial for producing functional activity in neuronal...