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Radiofrequency thermocoagulation for the treatment of refractory focal status epilepticus

Epileptic Disorders · 2025

DOI: 10.1002/epd2.70091

Auteurs

Feys O, Makhalova J, Manners T, Herrera‐García JD, Carron R, Bartolomei F

Les auteurs en lien sont membres de l'INS.

Équipes

NeuroStim, DynaMap

Résumé

Abstract This case study reports the first documented use of stereoelectroencephalography (SEEG)‐guided radiofrequency thermocoagulation (RFTC) to treat refractory status epilepticus (RSE). A 33‐year‐old woman with drug‐resistant epilepsy and recurrent RSE underwent SEEG to define her epileptogenic zone. A new RSE started shortly before and continued during the SEEG exploration, being unresponsive to multiple antiseizure medications, vagal nerve stimulation, and corticosteroid therapy. SEEG‐signal quantification based on ictal biomarkers, that is, epileptogenicity index and connectivity epileptogenicity index, identified the epileptogenic zone network (EZN) within the mesial prefrontal, premotor, and parietal cortex, with major implication of the anterior‐middle and posterior cingulate cortex. RFTC was performed on SEEG‐identified targets within the EZN and resulted in rapid cessation of electroclinical seizure activity and full recovery from motor deficits. Seizure frequency remained reduced by over 90% at 4 months post‐procedure. This case highlights the potential of RFTC as a possible therapeutic option for RSE by directly disrupting critical network nodes responsible for seizur

Abstract This case study reports the first documented use of stereoelectroencephalography (SEEG)‐guided radiofrequency thermocoagulation (RFTC) to treat refractory status epilepticus (RSE). A 33‐year‐old woman with drug‐resistant epilepsy and recurrent RSE underwent SEEG to define her epileptogenic zone. A new RSE started shortly before and continued during the SEEG exploration, being unresponsive to multiple antiseizure medications, vagal nerve stimulation, and corticosteroid therapy. SEEG‐signal quantification based on ictal biomarkers, that is, epileptogenicity index and connectivity epileptogenicity index, identified the epileptogenic zone network (EZN) within the mesial prefrontal, premotor, and parietal cortex, with major implication of the anterior‐middle and posterior cingulate cortex. RFTC was performed on SEEG‐identified targets within the EZN and resulted in rapid cessation of electroclinical seizure activity and full recovery from motor deficits. Seizure frequency remained reduced by over 90% at 4 months post‐procedure. This case highlights the potential of RFTC as a possible therapeutic option for RSE by directly disrupting critical network nodes responsible for seizur

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