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June 30, 2017Epilepsia400 citationsOpen Access

High‐frequency oscillations: The state of clinical research

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BFBirgit FrauscherFBFabrice BartoloméiKKKatsuhiro Kobayashi

Structured PICO

Are high-frequency oscillations (HFOs) useful for predicting surgical outcomes and monitoring disease activity in patients with epilepsy?

P
Population
Patients with epilepsy, including those undergoing epilepsy surgery and children with West syndrome or rolandic spikes
I
Intervention
Monitoring of interictal high-frequency oscillations (HFOs) > 80 Hz using EEG or magnetoencephalography
O
Outcome
Postsurgical seizure outcome, epilepsy severity, and treatment responsesurrogate

High-frequency oscillations are emerging as valuable EEG biomarkers for predicting epilepsy surgery outcomes and monitoring disease activity, though prospective multicenter trials are still needed.

Limitations

  • Time-consuming visual assessment (historically)
  • Lack of prospective multicenter trials with long recording periods in large patient samples

Abstract

Modern electroencephalographic (EEG) technology contributed to the appreciation that the EEG signal outside the classical Berger frequency band contains important information. In epilepsy, research of the past decade focused particularly on interictal high-frequency oscillations (HFOs) > 80 Hz. The first large application of HFOs was in the context of epilepsy surgery. This is now followed by other applications such as assessment of epilepsy severity and monitoring of antiepileptic therapy. This article reviews the evidence on the clinical use of HFOs in epilepsy with an emphasis on the latest developments. It highlights the growing literature on the association between HFOs and postsurgical seizure outcome. A recent meta-analysis confirmed a higher resection ratio for HFOs in seizure-free versus non-seizure-free patients. Residual HFOs in the postoperative electrocorticogram were shown to predict epilepsy surgery outcome better than preoperative HFO rates. The review further discusses the different attempts to separate physiological from epileptic HFOs, as this might increase the specificity of HFOs. As an example, analysis of sleep microstructure demonstrated a different coupling between HFOs inside and outside the epileptogenic zone. Moreover, there is increasing evidence that HFOs are useful to measure disease activity and assess treatment response using noninvasive EEG and magnetoencephalography. This approach is particularly promising in children, because they show high scalp HFO rates. HFO rates in West syndrome decrease after adrenocorticotropic hormone treatment. Presence of HFOs at the time of rolandic spikes correlates with seizure frequency. The time-consuming visual assessment of HFOs, which prevented their clinical application in the past, is now overcome by validated computer-assisted algorithms. HFO research has considerably advanced over the past decade, and use of noninvasive methods will make HFOs accessible to large numbers of patients. Prospective multicenter trials are awaited to gather information over long recording periods in large patient samples.

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Cite This Study

Frauscher et al. (2017) studied this question.

synapsesocial.com/papers/6a00c9b1b124fe5819860d29https://doi.org/10.1111/epi.13829
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