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Modelling the magnetic signature of neuronal tissue
2007
NeuroImage
Neuronal communication in the brain involves electrochemical currents, which produce magnetic fields. Stimulus-evoked brain responses lead to changes in these fields and can be studied using magneto-and electro-encephalography (MEG/EEG). In this paper we model the spatiotemporal distribution of the magnetic field of a physiologically idealized but anatomically realistic neuron to assess the possibility of using magnetic resonance imaging (MRI) for directly mapping the neuronal currents in the
doi:10.1016/j.neuroimage.2007.04.033
pmid:17544300
fatcat:kgqdteikcjbsvoht43emmmk24q