In this paper, a numerical meshless particle method is presented in order to solve the magnetoencephalography forward problem for analyzing the complex activation patterns in the human brain. The forward problem is devoted to compute the scalp potential and magnetic field distribution generated by a set of current sources representing the neural activity, and in this paper, it has been approached by means of the smoothed particle hydrodynamics method suitably handled. The Poisson equation generated by the quasi-stationary Maxwell’s curl equations, by assuming Neumann boundary conditions has been considered, and the current sources have been simulated by current dipoles. The adopted meshless particle model has provided good results in ...
The common way of measuring electrical activities of the human brain due tobody functions is to plac...
When biomagnetic and/or bioelectric measurements are used for the localization of electrical activit...
An alternative formulation for the Magnetoencephalography (MEG) forward problem with a layered head ...
In this paper, a multi-sphere particle method is built-up in order to estimate the solution of the P...
Abstract—In this paper, a multi-sphere particle method is built-up in order to estimate the solution...
Weak electrical currents in the brain flow as a consequence of acquisition, processing and transmiss...
In this paper the electromagnetic fields related to the current sources in the human brain are inve...
Weak electrical currents in the brain flow as a consequence of acquisition, processing and transmiss...
Noninvasive estimation of brain activity via magnetoencephalography (MEG) involves an inverse proble...
Electroenchephalography (EEG) and Magnetoenchephalophy (MEG) are common non invansive methods for st...
Brain source imaging is a sophisticated method for estimating the location of active brain tissues a...
This paper is made available with the permission of the Australian Mathematical Society Inc. Copyrig...
The collocation method combined with a serial expansion of the electric potential is presented as an...
In this paper, a first application of the method of fundamental solutions in estimating the electric...
The need for realistic electric field calculations in human noninvasive brain stimulation is undispu...
The common way of measuring electrical activities of the human brain due tobody functions is to plac...
When biomagnetic and/or bioelectric measurements are used for the localization of electrical activit...
An alternative formulation for the Magnetoencephalography (MEG) forward problem with a layered head ...
In this paper, a multi-sphere particle method is built-up in order to estimate the solution of the P...
Abstract—In this paper, a multi-sphere particle method is built-up in order to estimate the solution...
Weak electrical currents in the brain flow as a consequence of acquisition, processing and transmiss...
In this paper the electromagnetic fields related to the current sources in the human brain are inve...
Weak electrical currents in the brain flow as a consequence of acquisition, processing and transmiss...
Noninvasive estimation of brain activity via magnetoencephalography (MEG) involves an inverse proble...
Electroenchephalography (EEG) and Magnetoenchephalophy (MEG) are common non invansive methods for st...
Brain source imaging is a sophisticated method for estimating the location of active brain tissues a...
This paper is made available with the permission of the Australian Mathematical Society Inc. Copyrig...
The collocation method combined with a serial expansion of the electric potential is presented as an...
In this paper, a first application of the method of fundamental solutions in estimating the electric...
The need for realistic electric field calculations in human noninvasive brain stimulation is undispu...
The common way of measuring electrical activities of the human brain due tobody functions is to plac...
When biomagnetic and/or bioelectric measurements are used for the localization of electrical activit...
An alternative formulation for the Magnetoencephalography (MEG) forward problem with a layered head ...