We introduce fractional Nernst-Planck equations and derive fractional cable equations as macroscopic models for electrodiffusion of ions in nerve cells when molecular diffusion is anomalous subdiffusion due to binding, crowding or trapping. The anomalous subdiffusion is modelled by replacing diffusion constants with time dependent operators parameterized by fractional order exponents. Solutions are obtained as functions of the scaling parameters for infinite cables and semi-infinite cables with instantaneous current injections. Voltage attenuation along dendrites in response to alpha function synaptic inputs is computed. Action potential firing rates are also derived based on simple integrate and fire versions of the models. Our results sh...
Tutors: Antoni Ivorra, Tomás García-SánchezIt is known that, after the application of sufficiently h...
Modelling of the nerve impulse is often simplified to one spatial dimension, for example by using ca...
Mathematical models for excitable cells are commonly based on cable theory, which considers a homoge...
The cable equation is one of the most fundamental equations for modeling neuronal dynamics. Cable eq...
International audienceThe biophysical properties of dendritic spines play a critical role in neurona...
Electrical signaling in neurons is typically modeled using the cable equation, where dendrites or ax...
We propose an extension of the cable equation by introducing a Caputo time fractional derivative. Th...
The cable equation is one of the most fundamental equations for modeling neuronal dynamics. Cable eq...
The cable equation is one of the most fundamental equations for modeling neuronal dynamics. These eq...
A new membrane model for mammalian nerve fibers has been developed. The membrane model utilizes new ...
The cable equation is a proper framework for modeling electrical neural signalling that takes place ...
Mathematical models for excitable cells are commonly based on cable theory, which considers a homoge...
The governing theory of electric signal transfer through nerve fibre, as established by Hodgkin and ...
In biological contexts, experimental evidence suggests that classical diffusion is not the best desc...
In order to gain a better theoretical understanding of the interaction between voltage and calcium i...
Tutors: Antoni Ivorra, Tomás García-SánchezIt is known that, after the application of sufficiently h...
Modelling of the nerve impulse is often simplified to one spatial dimension, for example by using ca...
Mathematical models for excitable cells are commonly based on cable theory, which considers a homoge...
The cable equation is one of the most fundamental equations for modeling neuronal dynamics. Cable eq...
International audienceThe biophysical properties of dendritic spines play a critical role in neurona...
Electrical signaling in neurons is typically modeled using the cable equation, where dendrites or ax...
We propose an extension of the cable equation by introducing a Caputo time fractional derivative. Th...
The cable equation is one of the most fundamental equations for modeling neuronal dynamics. Cable eq...
The cable equation is one of the most fundamental equations for modeling neuronal dynamics. These eq...
A new membrane model for mammalian nerve fibers has been developed. The membrane model utilizes new ...
The cable equation is a proper framework for modeling electrical neural signalling that takes place ...
Mathematical models for excitable cells are commonly based on cable theory, which considers a homoge...
The governing theory of electric signal transfer through nerve fibre, as established by Hodgkin and ...
In biological contexts, experimental evidence suggests that classical diffusion is not the best desc...
In order to gain a better theoretical understanding of the interaction between voltage and calcium i...
Tutors: Antoni Ivorra, Tomás García-SánchezIt is known that, after the application of sufficiently h...
Modelling of the nerve impulse is often simplified to one spatial dimension, for example by using ca...
Mathematical models for excitable cells are commonly based on cable theory, which considers a homoge...