Literature DB >> 18180125

Failure to direct detect magnetic field dephasing corresponding to ERP generation.

Lin Tang1, Malcolm J Avison, James C Gatenby, John C Gore.   

Abstract

Functional magnetic resonance imaging (fMRI) has become the method of choice for mapping brain activity in human subjects and detects changes in regional blood oxygenation and volume associated with local changes in neuronal activity. While imaging based on blood oxygenation level dependent (BOLD) contrast has good spatial resolution and sensitivity, the hemodynamic signal develops relatively slowly and is only indirectly related to neuronal activity. An alternative approach termed magnetic source magnetic resonance imaging (msMRI) is based on the premise that neural activity may be mapped by magnetic resonance imaging (MRI) with greater temporal resolution by detecting the local magnetic field perturbations associated with local neuronal electric currents. We used a hybrid ms/BOLD MRI method to investigate whether msMRI could detect signal changes that occur simultaneously at the time of the production of well-defined event-related potentials, the P300 and N170, in regions that previously have been identified as generators of these electrical signals. Robust BOLD activations occurred after some seconds, but we were unable to detect any significant changes in the T2*-weighted signal in these locations that correlated temporally with the timings of the evoked response potentials (ERPs).

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Year:  2008        PMID: 18180125      PMCID: PMC2459244          DOI: 10.1016/j.mri.2007.09.003

Source DB:  PubMed          Journal:  Magn Reson Imaging        ISSN: 0730-725X            Impact factor:   2.546


  21 in total

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3.  Correlations and dissociations between BOLD signal and P300 amplitude in an auditory oddball task: a parametric approach to combining fMRI and ERP.

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9.  Inability to directly detect magnetic field changes associated with neuronal activity.

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  12 in total

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3.  Magnetic resonance imaging of ionic currents in solution: the effect of magnetohydrodynamic flow.

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4.  Toward direct MRI of neuro-electro-magnetic oscillations in the human brain.

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6.  Modeling neuronal current MRI signal with human neuron.

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Review 10.  What's new in neuroimaging methods?

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