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Noninvasive detection of focal seizures in ambulatory patients

  • Philippe Ryvlin*
  • , Leila Cammoun
  • , Ilona Hubbard
  • , France Ravey
  • , Sandor Beniczky
  • , David Atienza
  • *Corresponding author for this work

Research output: Contribution to journalReviewResearchpeer-review

Abstract

Reliably detecting focal seizures without secondary generalization during daily life activities, chronically, using convenient portable or wearable devices, would offer patients with active epilepsy a number of potential benefits, such as providing more reliable seizure count to optimize treatment and seizure forecasting, and triggering alarms to promote safeguarding interventions. However, no generic solution is currently available to reach these objectives. A number of biosignals are sensitive to specific forms of focal seizures, in particular heart rate and its variability for seizures affecting the neurovegetative system, and accelerometry for those responsible for prominent motor activity. However, most studies demonstrate high rates of false detection or poor sensitivity, with only a minority of patients benefiting from acceptable levels of accuracy. To tackle this challenging issue, several lines of technological progress are envisioned, including multimodal biosensing with cross-modal analytics, a combination of embedded and distributed self-aware machine learning, and ultra-low-power design to enable appropriate autonomy of such sophisticated portable solutions.

Original languageEnglish
Pages (from-to)S47-S54
JournalEpilepsia
Volume61 Suppl 1
Early online date2 Jun 2020
DOIs
Publication statusPublished - Nov 2020

Keywords

  • focal seizure
  • seizure detection
  • wearable devices

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