Objective: We propose a novel approach for modelling the interdependence of electrical and mechanical phenomena in nervous cells, by using electrothermal equivalences in finite element (FE) analysis so that existing thermomechanical tools can be applied. Methods: First, the equivalence between electrical and thermal properties of the nerve materials is established, and results of a pure heat conduction analysis performed in Abaqus CAE Software 6.13-3 are validated with analytical solutions for a range of steady and transient conditions. This validation includes the definition of equivalent active membrane properties that enable prediction of the action potential. Then, as a step toward fully coupled models, electromechanical coupling is imp...
Traumatic injuries to the central nervous system (brain and spinal cord) have recently been put unde...
In the article methodology of FEM stimulation of thermal effects, caused by neck-region neuro-electr...
International audienceThe use of modeling to simulate the effects of electrical stimulation on the n...
Traumatic brain injuries and damage are major causes of death and disability. We propose a 3D fully ...
Recent experimental evidence has uncovered complex biophysical phenomena accompanying the electrical...
This paper describes 3D Finite Element modelling solutions for a segment of a nervous cell axon, whi...
ObjectiveWe confirm that alteration of a neuron structure can induce abnormalities in signal propaga...
In the last decade, traumatic brain injuries (TBIs) and spinal cord injuries (SCIs) has become one o...
The electrical behavior of the Xenopus laevis nerve fibers was studied when combined electrical (cuf...
Abstract—A transient finite-element model has been presented to simulate extracellular potential sti...
Injuries to the central nervous system (CNS) have become a major health challenge in our society. Su...
Nowadays, high-density microelectrode arrays provide unprecedented possibilities to precisely activa...
Bioelectronic Medicines that modulate the activity patterns on peripheral nerves have promise as a n...
Modelling of the nerve impulse is often simplified to one spatial dimension, for example by using ca...
Electrical nerve fiber stimulation is a technique widely used in prosthetics and rehabilitation, and...
Traumatic injuries to the central nervous system (brain and spinal cord) have recently been put unde...
In the article methodology of FEM stimulation of thermal effects, caused by neck-region neuro-electr...
International audienceThe use of modeling to simulate the effects of electrical stimulation on the n...
Traumatic brain injuries and damage are major causes of death and disability. We propose a 3D fully ...
Recent experimental evidence has uncovered complex biophysical phenomena accompanying the electrical...
This paper describes 3D Finite Element modelling solutions for a segment of a nervous cell axon, whi...
ObjectiveWe confirm that alteration of a neuron structure can induce abnormalities in signal propaga...
In the last decade, traumatic brain injuries (TBIs) and spinal cord injuries (SCIs) has become one o...
The electrical behavior of the Xenopus laevis nerve fibers was studied when combined electrical (cuf...
Abstract—A transient finite-element model has been presented to simulate extracellular potential sti...
Injuries to the central nervous system (CNS) have become a major health challenge in our society. Su...
Nowadays, high-density microelectrode arrays provide unprecedented possibilities to precisely activa...
Bioelectronic Medicines that modulate the activity patterns on peripheral nerves have promise as a n...
Modelling of the nerve impulse is often simplified to one spatial dimension, for example by using ca...
Electrical nerve fiber stimulation is a technique widely used in prosthetics and rehabilitation, and...
Traumatic injuries to the central nervous system (brain and spinal cord) have recently been put unde...
In the article methodology of FEM stimulation of thermal effects, caused by neck-region neuro-electr...
International audienceThe use of modeling to simulate the effects of electrical stimulation on the n...