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      Assessing interactions in the brain with exact low-resolution electromagnetic tomography.

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          Abstract

          Scalp electric potentials (electroencephalogram; EEG) are contingent to the impressed current density unleashed by cortical pyramidal neurons undergoing post-synaptic processes. EEG neuroimaging consists of estimating the cortical current density from scalp recordings. We report a solution to this inverse problem that attains exact localization: exact low-resolution brain electromagnetic tomography (eLORETA). This non-invasive method yields high time-resolution intracranial signals that can be used for assessing functional dynamic connectivity in the brain, quantified by coherence and phase synchronization. However, these measures are non-physiologically high because of volume conduction and low spatial resolution. We present a new method to solve this problem by decomposing them into instantaneous and lagged components, with the lagged part having almost pure physiological origin.

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          Author and article information

          Journal
          Philos Trans A Math Phys Eng Sci
          Philosophical transactions. Series A, Mathematical, physical, and engineering sciences
          The Royal Society
          1364-503X
          1364-503X
          Oct 13 2011
          : 369
          : 1952
          Affiliations
          [1 ] The KEY Institute for Brain-Mind Research, University Hospital of Psychiatry, Lenggstrasse 31, 8032 Zurich, Switzerland. pascualm@key.uzh.ch
          Article
          369/1952/3768
          10.1098/rsta.2011.0081
          21893527
          656660cc-8044-4f82-8ff0-75255045b6ca
          History

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