In studies of the brain and the nervous system, extracellular signals – as measured by local field potentials (LFPs) or electroencephalography (EEG) – are of capital importance, as they allow to simultaneously obtain data from multiple neurons. The exact biophysical basis of these signals is, however, still not fully understood. Most models for the extracellular potential today are based on volume conductor theory, which assumes that the extracellular fluid is electroneutral and that the only contributions to the electric field are given by membrane currents, which can be imposed as boundary conditions in the mathematical model. This neglects a second, possibly important contributor to the extracellular field: the time- and position-depen...
Within the computational neuroscience community, there has been a focus on simulating the electrical...
This paper is concerned with the accurate and rapid calculation of extracellular potentials and curr...
Background: Computational modeling of biological cells usually ignores their extracellular fields, a...
AbstractIn neurophysiology, extracellular signals—as measured by local field potentials (LFP) or ele...
The electric activity of neurons creates extracellular potential fields. Recent findings show that t...
Many pathological conditions, such as seizures, stroke, and spreading depression, are associated wit...
Modelling of the nerve impulse is often simplified to one spatial dimension, for example by using ca...
Many pathological conditions, such as seizures, stroke, and spreading depression, are associated wit...
Mathematical models for excitable cells are commonly based on cable theory, which considers a homoge...
We present an axonal model that explicitly includes ionic diffusion in the intracellular, periaxonal...
Since seminal studies of a neuron membrane potential were summarized in a Hodgkin-Huxley model it be...
Poster Presentation from Nineteenth Annual Computational Neuroscience Meeting: CNS*2010 San Antonio,...
Mathematical models for excitable cells are commonly based on cable theory, which considers a homoge...
AbstractEarlier work on the modelling of the electrical and chemical potentials at the internal surf...
<p>This simulations were done for my PhD thesis. The purpose was to show that different morphologies...
Within the computational neuroscience community, there has been a focus on simulating the electrical...
This paper is concerned with the accurate and rapid calculation of extracellular potentials and curr...
Background: Computational modeling of biological cells usually ignores their extracellular fields, a...
AbstractIn neurophysiology, extracellular signals—as measured by local field potentials (LFP) or ele...
The electric activity of neurons creates extracellular potential fields. Recent findings show that t...
Many pathological conditions, such as seizures, stroke, and spreading depression, are associated wit...
Modelling of the nerve impulse is often simplified to one spatial dimension, for example by using ca...
Many pathological conditions, such as seizures, stroke, and spreading depression, are associated wit...
Mathematical models for excitable cells are commonly based on cable theory, which considers a homoge...
We present an axonal model that explicitly includes ionic diffusion in the intracellular, periaxonal...
Since seminal studies of a neuron membrane potential were summarized in a Hodgkin-Huxley model it be...
Poster Presentation from Nineteenth Annual Computational Neuroscience Meeting: CNS*2010 San Antonio,...
Mathematical models for excitable cells are commonly based on cable theory, which considers a homoge...
AbstractEarlier work on the modelling of the electrical and chemical potentials at the internal surf...
<p>This simulations were done for my PhD thesis. The purpose was to show that different morphologies...
Within the computational neuroscience community, there has been a focus on simulating the electrical...
This paper is concerned with the accurate and rapid calculation of extracellular potentials and curr...
Background: Computational modeling of biological cells usually ignores their extracellular fields, a...