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July 25, 2000; 55 (2) Brief Communications

Optical intrinsic signal imaging in a rodent seizure model

James W. Y. Chen, Alyssa M. O’Farrell, Arthur W. Toga
First published July 25, 2000, DOI: https://doi.org/10.1212/WNL.55.2.312
James W. Y. Chen
From the Laboratory of NeuroImagingDivision of Brain Mapping, Department of Neurology, School of Medicine, University of California at Los Angeles.
MD, PhD
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Alyssa M. O’Farrell
From the Laboratory of NeuroImagingDivision of Brain Mapping, Department of Neurology, School of Medicine, University of California at Los Angeles.
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Arthur W. Toga
From the Laboratory of NeuroImagingDivision of Brain Mapping, Department of Neurology, School of Medicine, University of California at Los Angeles.
PhD
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Citation
Optical intrinsic signal imaging in a rodent seizure model
James W. Y. Chen, Alyssa M. O’Farrell, Arthur W. Toga
Neurology Jul 2000, 55 (2) 312-315; DOI: 10.1212/WNL.55.2.312

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Abstract

Article abstract The authors studied seizure activity with optical intrinsic signal (OIS) imaging in a rat seizure model. OIS, which measures vascular and metabolic effects associated with neuronal activity, showed significant cortical reflectance changes from penicillin-induced seizures, and correlated well with EEG epileptiform discharges. Furthermore, OIS changes often preceded initial EEG spikes. These observations suggest that OIS is well coupled with seizure activity, and may provide sensitive cues for seizure detection.

  • Received September 27, 1999.
  • Accepted in final form February 29, 2000.
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