Coupling continuous neural networks to the electromagnetic field in nervous tissue

We present a microscopic approach for the coupling of cortical activity, as resulting from proper dipole currents of pyramidal neurons, to the electromagnetic field in extracellular fluid in presence of diffusion and Ohmic conduction. As a result, neural activity becomes represented by a continuous neural field equation, while an observation model for electric field potentials is obtained from the interaction of cortical dipole currents with charge density in non-resistive extracellular space as described by the Nernst-Planck equation.

Paper

References (30)

03Biophys2009 · J. 96, 2589
04Biophys. J2004 · Biophys. J
05Biol. Cybern1977 · Biol. Cybern
06Annal. Physik1906 · Annal. Physik
07NeuroImage J. Freeman, Biol. Cybern. Neurocomputing Biol. Cybern. Kybernetik Biol. Cybern. Biophys. J1972 · NeuroImage J. Freeman, Biol. Cybern. Neurocomputing Biol. Cybern. Kybernetik Biol. Cybern. Biophys. J
08NeuroImage Cogn. Neurodyn2003 · NeuroImage Cogn. Neurodyn
09Physiol. Rev1995 · Physiol. Rev
10J. Neurosci. Meth2001 · J. Neurosci. Meth
11Lectures in Supercomputational Neuroscience2008 · Lectures in Supercomputational Neuroscience
12J. Physiol. PLoS Comput. Biol1952 · J. Physiol. PLoS Comput. Biol

Scroll for more · 18 remaining

Similar papers

© 2026 NYSGPT2525 LLC