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Updated: Apr 18, 2026

Generation of Local CA1 γ Oscillations by Tetanic Stimulation
Published on: August 14, 2015
Gamma oscillations precede interictal epileptiform spikes in the seizure onset zone
Liankun Ren1, Michal T Kucewicz1, Jan Cimbalnik1
1From the Mayo Systems Electrophysiology Laboratory, Department of Neurology (L.R., M.T.K., J.C., J.Y.M., B.H.B., W.H., S.M.S., G.A.W.), and Department of Neurosurgery (W.R.M., F.B.M.), Mayo Clinic, Rochester, MN; Department of Neurology (L.R.), China-Japan Friendship Hospital, Beijing, China; and International Clinical Research Center (J.C.), St. Anne's University Hospital, Brno, Czech Republic.
Objective:
To investigate the generation, spectral characteristics, and potential clinical significance of brain activity preceding interictal epileptiform spike discharges (IEDs) recorded with intracranial EEG.
Methods:
Seventeen adult patients with drug-resistant temporal lobe epilepsy were implanted with intracranial electrodes as part of their evaluation for epilepsy surgery. IEDs detected on clinical macro- and research microelectrodes were analyzed using time-frequency spectral analysis.
Results:
Gamma frequency oscillations (30-100 Hz) often preceded IEDs in spatially confined brain areas. The gamma-IEDs were consistently observed 35 to 190 milliseconds before the epileptiform spike waveforms on individual macro- and microelectrodes. The gamma oscillations associated with IEDs had longer duration (p < 0.001) and slightly higher frequency (p = 0.045) when recorded on microelectrodes compared with clinical macroelectrodes. Although gamma-IEDs comprised only a subset of IEDs, they were strongly associated with electrodes in the seizure onset zone (SOZ) compared with the surrounding brain regions (p = 0.004), in sharp contrast to IEDs without preceding gamma oscillations that were often also detected outside of the SOZ. Similar to prior studies, isolated pathologic high-frequency oscillations in the gamma (30-100 Hz) and higher (100-600 Hz) frequency range, not associated with an IED, were also found to be associated with SOZ.
Conclusions:
The occurrence of locally generated gamma oscillations preceding IEDs suggests a mechanistic role for gamma in pathologic network activity generating IEDs. The results show a strong association between SOZ and gamma-IEDs. The potential clinical application of gamma-IEDs for mapping pathologic brain regions is intriguing, but will require future prospective studies.
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