Results 151 to 160 of about 19,739 (193)
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Principles of Magnetoencephalography
Journal of Clinical Neurophysiology, 1991Magnetoencephalography (MEG) is a new, noninvasive functional test equivalent to EEG. It has been used to localize the sources of evoked responses and interictal and ictal epileptiform discharges and to study patients with psychiatric illnesses, cerebrovascular accidents, and migraine. In epilepsy research, it is hoped that MEG will provide information
S, Sato, M, Balish, R, Muratore
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Archives of General Psychiatry, 1989
Magnetoencephalography (MEG) is a noninvasive method of recording magnetic fields that result from brain electrical activity. The information it provides is thus closely related to the information in the electroencephalogram (EEG). There are a number of important basic and clinical research questions that must be asked of MEG, a relatively new ...
A, Reeve, D F, Rose, D R, Weinberger
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Magnetoencephalography (MEG) is a noninvasive method of recording magnetic fields that result from brain electrical activity. The information it provides is thus closely related to the information in the electroencephalogram (EEG). There are a number of important basic and clinical research questions that must be asked of MEG, a relatively new ...
A, Reeve, D F, Rose, D R, Weinberger
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Magnetoencephalography in neonatology
Neurophysiologie Clinique/Clinical Neurophysiology, 2012Magnetoencephalography (MEG) is a noninvasive method to study brain activity. In the previous decade the advantages of MEG -- good temporal resolution combined with good spatial resolution allowing separation of activated brain areas -- have been successfully used in gaining new information about the neonatal brain functioning.
Pihko Elina Maria +3 more
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1999
Abstract One of the most significant advances in the last few years in the clinical study of localization-related symptomatic epilepsies has been the search for topographic correlation between the seizure types and the epileptogenic area.
Paolo Curatolo, Marco Peresson
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Abstract One of the most significant advances in the last few years in the clinical study of localization-related symptomatic epilepsies has been the search for topographic correlation between the seizure types and the epileptogenic area.
Paolo Curatolo, Marco Peresson
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Magnetoencephalography and Neuromodulation
2012Magnetoencephalography (MEG) is a noninvasive method which allows recordings of human brain activity with excellent temporal and good spatial resolution. In this chapter, we review applications of MEG in neuromodulation. We provide an overview of studies which used MEG to optimize parameters for neuromodulation and to characterize the ...
Alfons, Schnitzler, Jan, Hirschmann
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2009
Magnetoencephalography (MEG) encompasses a family of non-contact, non-invasive techniques for detecting the magnetic field generated by the electrical activity of the brain, for analyzing this MEG signal and for using the results to study brain function.
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Magnetoencephalography (MEG) encompasses a family of non-contact, non-invasive techniques for detecting the magnetic field generated by the electrical activity of the brain, for analyzing this MEG signal and for using the results to study brain function.
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2016
For presurgical assessments for resection of an epileptogenic lesion or zone, evaluations over the last 20 years have established magnetoencephalography (MEG) as a valuable tool in routine clinical practice in both adult and paediatric age groups. MEG can accurately localize both ictal and inter-ictal spike sources.
Paul L. Furlong +3 more
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For presurgical assessments for resection of an epileptogenic lesion or zone, evaluations over the last 20 years have established magnetoencephalography (MEG) as a valuable tool in routine clinical practice in both adult and paediatric age groups. MEG can accurately localize both ictal and inter-ictal spike sources.
Paul L. Furlong +3 more
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2017
This chapter introduces magnetoencephalography (MEG), a tool to study brain dynamics in basic and clinical neuroscience. MEG picks up brain signals with millisecond resolution, as does electroencephalography, but without distortion by skull and scalp.
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This chapter introduces magnetoencephalography (MEG), a tool to study brain dynamics in basic and clinical neuroscience. MEG picks up brain signals with millisecond resolution, as does electroencephalography, but without distortion by skull and scalp.
openaire +1 more source

