Ictal Direct Current Shifts Preceded Much Earlier Than High Frequency Oscillations After Status: Is It the Effect of Status or Antiseizure Medication?

Author:

Kanazawa Kyoko1ORCID,Kajikawa Shunsuke1,Matsumoto Riki12,Takatani Miwa1,Nakatani Mitsuyoshi1,Daifu-Kobayashi Masako1,Imamura Hisaji1,Kikuchi Takayuki1,Kunieda Takeharu3,Miyamoto Susumu3,Takahashi Ryosuke1,Matsuhashi Masao4,Ikeda Akio4

Affiliation:

1. Department of Neurology, Kyoto University, Kyoto, Japan;

2. Division of Neurology, Kobe University Graduate School of Medicine, Kobe, Japan;

3. Department of Neurosurgery, Kyoto University, Kyoto, Japan; and

4. Department of Epilepsy, Movement Disorders and Physiology, Kyoto University, Kyoto, Japan.

Abstract

Purpose: While spikes and sharp waves are considered as markers of epilepsy in conventional electroencephalography, ictal direct current (DC) shifts and high-frequency oscillations (HFOs) appear to be useful biomarkers for epileptogenicity. We analyzed how ictal DC shifts and HFOs were affected by focal status epilepticus and antiseizure medications (ASMs). Methods: A 20-year-old female patient who underwent long-term intracranial electrode implantation for epilepsy surgery presented with 72 habitual seizures and a focal status epilepticus episode lasting for 4 h. Ten, 3, and 10 consecutive habitual seizures were analyzed before the status, after the status, and after ASM (valproate) loading, respectively. Results: Before and immediately after the status, ictal DC shifts remained the same in terms of the amplitude, duration, and slope of DC shifts. High-frequency oscillations also remained the same in terms of the duration, frequency, and power except for the power of the lower frequency band. After ASM loading, the duration, amplitude, and slope of the ictal DC shift were significantly attenuated. The duration, frequency, and power of the HFOs were significantly attenuated. Furthermore, the interval between the DC onset and HFO onset was significantly longer and the interval between the HFO onset and ictal DC shift peak was significantly shorter. Conclusions: The attenuation of ictal DC shifts and HFOs after ASM loading implies that astrocyte and neuronal activity may be both attenuated by ASMs. This finding may help with our understanding of the pathophysiology of epilepsy and can aid with the discovery of new approaches for epilepsy management.

Funder

The Japan Ministry of Education, Culture, Sports, Science and Technology

Japan Society for the Promotion of Science

National Center of Neurology and Psychiatry

Publisher

Ovid Technologies (Wolters Kluwer Health)

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