MEG

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Related to magnetoencephalography: functional magnetic resonance imaging
AcronymDefinition
MEGMega- (Million)
MEGMagnetoencephalography
MEGMono Ethylene Glycol
MEGMagnetoencephalogram
MEGMetals Economics Group
MEGMotionless Electromagnetic Generator
MEGMetropolitan Enforcement Group
MEGMetadata for Education Group (UK)
MEGMean Effective Gain
MEGMobile Expert Group (OSGi Alliance)
MEGMiddle East and Gulf
MEGMarketing Educators Group
MEGMilitary Exposure Guideline
MEGMocha Entertainment Group, Inc (Los Angeles, CA)
MEGMinimum Expected Grade (UK education)
MEGMatrix Element Generator
MEGMEF (Marine Expeditionary Force) Engineer Group (USMC)
MEGMega Event Generator (Cisco)
MEGMicro Enterprise and Training Development Grant (Trinidad & Tobago)
MEGMaintenance Engineering Group
MEGManagement Evaluation Guide
MEGMarine Equipment Buyers' Guide
MEGMessage Entry Generator
MEGMining and Environmental Geology (University of Venda; est. 2000; South Africa)
References in periodicals archive ?
Ilmoniemi, "Hybrid ultra-low-field-MRI and magnetoencephalography system bassed on a commercial whole-head neuro-magneto-meter," Magnetic Resonance in Medicine, Vol.
and is a]daptable to mapping many functions--sensory, motor, language, [and] memory cortex," Basic Principles of Magnetoencephalography, WEB.
Francomano, "A numerical meshless particle method in solving the magnetoencephalography forward problem," International Journal of Numerical Modelling: Electronic Networks, Devices and Fields, Vol.
If a cheap and portable non-SQUID magnetoencephalography can be perfected, researchers hope that it will be able to open up new ways to understand what's going on inside our heads.
of Texas Medical School, Houston), together with members of the International Society for the Advancement of Clinical Magnetoencephalography, have co-written this elegant and thorough guide to the field, with individual sections on each application currently in use, and a concluding section on the possible future applications.
Magnetoencephalography and fMRI (functional magnetic resonance imaging) are other noninvasive methods that have been used in BCI research but are not easily used outside of special facilities.
Cognitive psychologists use functional magnetic resource imaging (fMRI) as well as electroencephalography (EEG) and magnetoencephalography (MEG) to measure neural activity in different parts of the brain.
The new test employs a technique called magnetoencephalography (MEG) which analyses magnetic charges released by synchronous connections between populations of brain cells.
The other less used but promising techniques in neuromarketing are electroencephalography (EEG), positron emission tomography (PET), magnetoencephalography (MEG) and transcranial magnetic stimulation (TMS).
Studies investigating neuroplastic changes utilise a variety of sophisticated measurement tools such as transcranial magnetic stimulation (TMS), magnetoencephalography (MEG), electroencephalography (EEG), magnetic resonance imaging (MRI) and functional magnetic resonance imaging (fMRI).
Support for the existence of these changes in the CNS in both the thalamus and the cortex has been found utilizing both positron emission tomography (PET) and magnetoencephalography (MEG).
Roberts and his colleagues at the Children's Hospital of Philadelphia used magnetoencephalography (MEG) to measure the electromagnetic field produced during neuronal activation in 30 children with autism spectrum disorders, with or without concomitant language impairment, and 34 age-matched, typically developing controls.