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Stimulation to probe, excite, and inhibit the epileptic brain.

Publication ,  Journal Article
Frauscher, B; Bartolomei, F; Baud, MO; Smith, RJ; Worrell, G; Lundstrom, BN
Published in: Epilepsia
December 2023

Direct cortical stimulation has been applied in epilepsy for nearly a century and has experienced a renaissance, given unprecedented opportunities to probe, excite, and inhibit the human brain. Evidence suggests stimulation can increase diagnostic and therapeutic utility in patients with drug-resistant epilepsies. However, choosing appropriate stimulation parameters is not a trivial issue, and is further complicated by epilepsy being characterized by complex brain state dynamics. In this article derived from discussions at the ICTALS 2022 Conference (International Conference on Technology and Analysis for Seizures), we succinctly review the literature on cortical stimulation applied acutely and chronically to the epileptic brain for localization, monitoring, and therapeutic purposes. In particular, we discuss how stimulation is used to probe brain excitability, discuss evidence on the usefulness of stimulation to trigger and stop seizures, review therapeutic applications of stimulation, and finally discuss how stimulation parameters are impacted by brain dynamics. Although research has advanced considerably over the past decade, there are still significant hurdles to optimizing use of this technique. For example, it remains unclear to what extent short timescale diagnostic biomarkers can predict long-term outcomes and to what extent these biomarkers add information to already existing biomarkers from passive electroencephalographic recordings. Further questions include the extent to which closed loop stimulation offers advantages over open loop stimulation, what the optimal closed loop timescales may be, and whether biomarker-informed stimulation can lead to seizure freedom. The ultimate goal of bioelectronic medicine remains not just to stop seizures but rather to cure epilepsy and its comorbidities.

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Published In

Epilepsia

DOI

EISSN

1528-1167

Publication Date

December 2023

Volume

64 Suppl 3

Issue

Suppl 3

Start / End Page

S49 / S61

Location

United States

Related Subject Headings

  • Seizures
  • Neurology & Neurosurgery
  • Humans
  • Epilepsy
  • Drug Resistant Epilepsy
  • Deep Brain Stimulation
  • Brain
  • Biomarkers
  • 3209 Neurosciences
  • 3202 Clinical sciences
 

Citation

APA
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ICMJE
MLA
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Frauscher, B., Bartolomei, F., Baud, M. O., Smith, R. J., Worrell, G., & Lundstrom, B. N. (2023). Stimulation to probe, excite, and inhibit the epileptic brain. Epilepsia, 64 Suppl 3(Suppl 3), S49–S61. https://doi.org/10.1111/epi.17640
Frauscher, Birgit, Fabrice Bartolomei, Maxime O. Baud, Rachel J. Smith, Greg Worrell, and Brian N. Lundstrom. “Stimulation to probe, excite, and inhibit the epileptic brain.Epilepsia 64 Suppl 3, no. Suppl 3 (December 2023): S49–61. https://doi.org/10.1111/epi.17640.
Frauscher B, Bartolomei F, Baud MO, Smith RJ, Worrell G, Lundstrom BN. Stimulation to probe, excite, and inhibit the epileptic brain. Epilepsia. 2023 Dec;64 Suppl 3(Suppl 3):S49–61.
Frauscher, Birgit, et al. “Stimulation to probe, excite, and inhibit the epileptic brain.Epilepsia, vol. 64 Suppl 3, no. Suppl 3, Dec. 2023, pp. S49–61. Pubmed, doi:10.1111/epi.17640.
Frauscher B, Bartolomei F, Baud MO, Smith RJ, Worrell G, Lundstrom BN. Stimulation to probe, excite, and inhibit the epileptic brain. Epilepsia. 2023 Dec;64 Suppl 3(Suppl 3):S49–S61.
Journal cover image

Published In

Epilepsia

DOI

EISSN

1528-1167

Publication Date

December 2023

Volume

64 Suppl 3

Issue

Suppl 3

Start / End Page

S49 / S61

Location

United States

Related Subject Headings

  • Seizures
  • Neurology & Neurosurgery
  • Humans
  • Epilepsy
  • Drug Resistant Epilepsy
  • Deep Brain Stimulation
  • Brain
  • Biomarkers
  • 3209 Neurosciences
  • 3202 Clinical sciences