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Sökning: L773:0896 0267 OR L773:1573 6792 > Decrease in Propaga...

Decrease in Propagation of Interictal Epileptiform Activity After Introduction of Levetiracetam Visualized with Electric Source Imaging

Larsson, Pål G. (författare)
Department of Neurosurgery, Oslo University Hospital, Norway
Eeg-Olofsson, Orvar (författare)
Uppsala universitet,Institutionen för kvinnors och barns hälsa,Barnneurologisk forskning/Ahlsten
Michel, Christoph M. (författare)
Department of Neurology, University Hospital, Geneva, Switzerland
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Seeck, Margitta (författare)
Neurology Clinic, University Hospital, Geneva, Switzerland
Lantz, Goeran (författare)
Department of Neurology, University Hospital, Geneva, Switzerland
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 (creator_code:org_t)
2010-06-24
2010
Engelska.
Ingår i: Brain Topography. - : Springer Science and Business Media LLC. - 0896-0267 .- 1573-6792. ; 23:3, s. 269-278
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Different neuroimaging techniques (fMRI, spectroscopy, PET) are being used to evaluate candidate drugs in pharmacological development. In patients with epilepsy fast propagation of the epileptiform activity between different brain areas occurs. Electric Source Imaging (ESI), in contrast to the aforementioned techniques, has a millisecond time resolution, allowing visualization of this fast propagation. The purpose of the current project was to use ESI to investigate whether introduction of an antiepileptic drug (levetiracetam, LEV) would change the propagation patterns of the interictal epileptiform activity. Thirty patients with epilepsy were subject to an EEG recording before (pre-LEV) and after (in-LEV) introduction of LEV. Interictal spikes with similar topographic distribution were averaged within each subject, and a distributed source model was used to localize the EEG sources of the epileptiform activity. The temporal development of the activity within 20 regions of interest (ROIs) was determined, and source propagation between different regions was compared between the pre-LEV and in-LEV recordings. Patients with epileptic seizures showed propagation in 22/24 identified spike types in the pre-LEV recordings. In the in-LEV recordings only 7/15 spike types showed propagation, and six of these seven propagating spikes were recorded in patients with poor effect of treatment. Also in patients without seizures LEV tended to suppress propagation. We conclude that the observed suppression of source propagation can be considered as an indicator of effective antiepileptic treatment. ESI might thus become a useful tool in the early clinical evaluation of new candidate drugs in pharmacological development.

Nyckelord

EEG
Epilepsy
Electric source imaging
Propagation
Levetiracetam
MEDICINE
MEDICIN

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